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Zia Mian, a research assistant with the Program on Science and Global Security (PS&GS) at Princeton University and lecturer of public and international affairs at the Woodrow Wilson School, has been with PS&GS since 1997. His interests include nuclear weapons and nuclear energy programs in South Asia, and finding alternative policies that can contribute to disarmament and sustainable development. With Dr. Pervez Hoodbhoy, Mian co-produced Crossing the Lines, a documentary film about India, Pakistan, and the battle over Kashmir, which was shown at CISAC this past summer. He has edited and co-edited a number of books on South Asia, including Out of the Nuclear Shadow (co-edited with Smitu Kothari; Zed Press, London and Rainbow Press, New Delhi, 2001). Mian has also co-edited a volume with Iftikhar Ahmad and Dohra Ahmad, Between Past and Future: Selected Essays on Pakistan by Eqbal Ahmad (Oxford University Press, Karachi).

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Zia Mian Research Assistant, Program on Science and Global Security, and Lecturer, Woodrow Wilson School of Public and International Affairs Speaker Princeton University
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Allen S. Weiner examines to what degree the global "war on terror" that has erupted since September 11, 2001 fits the "just war" doctrine of international relations or even whether it can properly be considered a war at all in terms of positive international law. Whether or not these labels apply is not merely a matter of academic debate, Weiner notes, but has broader implications for the international legal responsibilities of the United States in Afghanistan, Iraq and other theaters of the "war on terror

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rsd25_073_0376a.jpg JD

Allen S. Weiner is senior lecturer in law and director of the Stanford Program in International Law at Stanford Law School. He is also the co-director of the Stanford Center on International Conflict and Negotiation. He is an international legal scholar with expertise in such wide-ranging fields as international and national security law, the law of war, international conflict resolution, and international criminal law (including transitional justice). His scholarship focuses on international law and the response to the contemporary security threats of international terrorism, the proliferation of weapons of mass destruction, and situations of widespread humanitarian atrocities. He also explores the relationship between international and domestic law in the context of asymmetric armed conflicts between the United States and nonstate groups and the response to terrorism. In the realm of international conflict resolution, his highly multidisciplinary work analyzes the barriers to resolving violent political conflicts, with a particular focus on the Israeli-Palestinian conflict. Weiner’s scholarship is deeply informed by experience; for more than a decade he practiced international law in the U.S. Department of State, serving as an attorney-adviser in the Office of the Legal Adviser and as legal counselor at the U.S. Embassy in The Hague. In those capacities, he advised government policy-makers, negotiated international agreements, and represented the United States in litigation before the Iran-United States Claims Tribunal, the International Criminal Tribunal for the Former Yugoslavia, and the International Court of Justice. He teaches courses in public international law, international conflict resolution, and international security matters at Stanford Law School.

Weiner is the author of "Constitutions as Peace Treaties: A Cautionary Tale for the Arab Spring” in the Stanford Law Review Online (2011) and co-author (with Barry E. Carter) of International Law (6th ed. 2011). Other publications include “The Torture Memos and Accountability" in the American Society of International Law Insight (2009), "Law, Just War, and the International Fight Against Terrorism: Is It War?", in Intervention, Terrorism, and Torture: Contemporary Challenges to Just War Theory (Steven P. Lee, ed.) (2007), ”Enhancing Implementation of U.N. Security Council Resolution 1540: Report of the Center on International Security and Cooperation” (with Chaim Braun, Michael May & Roger Speed) (September 2007), and "The Use of Force and Contemporary Security Threats: Old Medicine for New Ills?", Stanford Law Review (2006).

Weiner has worked on several Supreme Court amicus briefs concerning national security and international law issues, including cases brought involving "war on terror" detainees.  He has also submitted petitions before the United Nations Working Group on Arbitrary Detention on behalf of Vietnamese social and political activists detained by their governing for the exercise of free speech rights.

Weiner earned a BA from Harvard College and a JD from Stanford Law School.

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Allen Weiner Warren Christopher Professor of the Practice of International Law and Diplomacy Speaker FSI; Stanford Law School
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The nuclear nonproliferation regime has come under attack from proliferation determinists, who argue that resolute proliferants connected by decentralized networks can be stopped only through the use of aggressive export controls or regime change. Proliferation pragmatists counter that nuclear aspirants are neither as resolved nor as advanced as determinists claim. A technical review of recent proliferators' progress reveals that Iran, North Korea, and Libya (before it renounced its nuclear program) have been unable to significantly cut development times; the evidence that these regimes are dead set on proliferating and cannot be persuaded to give up their nuclear programs is not compelling. Because these states lack tacit knowledge, the most effective way to dissolve the hub-and-spoke or star-shaped structures of their nuclear and ballistic missile networks is to target the hubs--that is, second-tier proliferators such as Pakistan that have assisted these states with their nuclear and missile programs. Past strategies aimed at dissuading proliferants have been most successful when they combine diplomatic, social, and economic benefits with credible threats and clear red lines. The United States should therefore use these strategies instead of regime change to target current and potential hub states to halt further proliferation.

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International Security
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Michael M. May
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The six-party talks on North Korea's nuclear weapons raise public concerns about whether Pyongyang will indeed dismantle its nuclear weapons program or whether it will pursue long-range nuclear missiles that could destroy Seoul, Tokyo or an American city. Overlooked is the threat to U.S. military capabilities, write CISAC's Michael M. May and colleague Michael Nacht in this Financial Times op-ed.

Amid uncertainty over the outcome of the six-party negotiations on North Korea's nuclear weapons development, public concern is likely to focus on whether Pyongyang will live up to commitments it made to dismantle its nuclear weapons programme (already questionable) and whether it will pursue long-range nuclear missiles that could destroy an American city or, more immediately, Seoul and Tokyo. But the latter concern is not the most effective nuclear threat North Korea or other potential adversaries could pose.

A nuclear threat to American cities, if implemented, would certainly provoke massive US retaliation. There are better options for opponents: credible, cheaper and more suited to the US capabilities that adversaries would face. Since the cold war, the top US military priority, as stated in congressional testimonies, has been to deploy the world's most effective power projection forces. These forces have been used in the Balkans, the Persian Gulf and central Asia. A power projection force operates in or near hostile territory. It must rely on superior training, tactics and equipment. Joint force training, mobile communication and control, soldiers capable of individual initiative and precision-guided munitions have been key to US success.

Any power projection force needs air bases and ports of debarkation and logistics centres for sustained operations. These facilities must be rented or conquered. Their number is limited - a handful in Iraq, and not many more in east Asia, seven or so in Japan, some bases in South Korea, and a few others. These facilities are highly vulnerable even to inaccurate nuclear missile attacks. They are "soft targets", not "hardened" against nuclear weapons.

North Korea, with a couple of dozen warheads mounted on its intermediate-range No Dong missiles, or its longer-range Taepo Dong missiles, could threaten all the US assets mentioned above and have weapons left to threaten Tokyo and Seoul.

The US could destroy those North Korean military and nuclear assets it could locate. North Korean forces could retreat into the mountains and position for a protracted ground war. But would the US then launch a massive attack against North Korea with the threat still hanging over Japanese and South Korean cities?

The Pentagon's Quadrennial Defense Review envisages a force structure better suited to counter-terrorism and control of the seas and the sky, rather than focused on fighting two land wars simultaneously. The nuclear threat to essential US force-projection assets largely counterbalances the advantage provided by US conventional forces, without necessarily consigning whole cities and industrial bases to destruction. That latter threat can still be held in reserve by our adversaries.

Should this threat mature, it would undercut the credibility of US security guarantees in east Asia that have been the hallmark of US strategy in the region for more than half a century. Japan, South Korea and Taiwan all depend heavily on these guarantees for their security. This credibility has dissuaded each government from acquiring its own nuclear force. Such restraint, in turn, has permitted China to proceed at a more measured pace in its own nuclear weapons development programmes.

If key political and defence officials in Tokyo, Seoul and Taipei no longer believed in US guarantees because of the vulnerability of US military assets in the region to a North Korean nuclear missile attack, the consequences for their own security and for US national strategy could be profound. Although circumstances are quite different in the Middle East-Persian Gulf region, similar consequences could materialise if Iran or another hostile country developed a comparable nuclear missile capability.

A great deal is at stake in constraining the missile and nuclear weapons capabilities of North Korea and other rogue states. The US thus must utilise all the resources at its disposal, working constructively with its allies and other interested parties, to deny these states the capabilities they almost surely seek to acquire. A more resilient forward defence and deterrent posture is essential to an effective American global strategy.

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A new united nations report recommending the most sweeping reform in the institution's history offers a global vision of collective security for the 21st century that is as committed to development in poor nations as it is to prevention of nuclear terrorism in rich ones.

A new united nations report recommending the most sweeping reform in the institution's history offers a global vision of collective security for the 21st century that is as committed to development in poor nations as it is to prevention of nuclear terrorism in rich ones.

The point is, according to the report's research director, Stephen Stedman, a threat to one is a threat to all in today's world. "Globalization means that a major terrorist attack anywhere in the industrial world would have devastating consequences for the well-being of millions around the developing world," the document states. The report's value lies in putting forward a comparative framework of collective security that addresses all the compelling threats of the day, Stedman explained. "The recommendations really are the most important possible makeover of the institution in 60 years," he said. "I think something is going to come out of it." Stedman, a senior fellow at the Center for International Security and Cooperation (CISAC) at the Stanford Institute for International Studies (SIIS), was recruited a year ago by U.N. Secretary General Kofi Annan to direct research for the High-Level Panel on Threats, Challenges, and Change. Stedman is an expert on civil wars, mediation, conflict prevention, and peacekeeping.

Annan created the 16-member blue-ribbon panel, made up mostly of former government leaders and ministers, in the wake of widespread heated criticism of the United Nations following the U.S.-led war in Iraq. In Annan's annual report to the General Assembly in 2003, he said, "Rarely have such dire forecasts been made about the U.N. ... We have reached a fork in the road ... a moment no less decisive than 1945 itself, when the U.N. was founded." The panel was charged with analyzing global security threats and proposing far-reaching reforms to the international system.

On December 2 the panel, chaired by former Thai prime minister Anand Panyarachun, issued its 95-page report: "A More Secure World: Our Shared Responsibility." The document identifies six major threats to global security:

-War between states;

-Violence within states, including civil wars, large-scale human rights abuses, and genocide;

-Poverty, infectious disease, and environmental degradation;

-Nuclear, radiological, chemical, and biological weapons;

-Terrorism; and

-Transnational organized crime.

Although states do not face these threats equally, a collective security system must take all member states' threats seriously and deal with them equitably, the report noted. It specifically mentioned the world's appallingly slow response to AIDS.

The report makes 101 recommendations for collective prevention and response to the threats, including ways to reform the United Nations. Annan described these in a December 3 editorial in the International Herald Tribune as "the most comprehensive and coherent set of proposals for forging a common response to common threats that I have seen."

The document also reaffirms the right of states to defend themselves-even preemptively-when an attack is imminent, and it offers guidelines to help the Security Council decide when to authorize the use of force. Stedman said other significant proposals involve improving biosecurity, strengthening nuclear nonproliferation, and defining terrorism. Panel members agreed that any politically motivated violence against civilians should be regarded as terrorism and condemned.

The panel was very critical of the Human Rights Commission, a body that has often harmed the United Nations' reputation by permitting the membership of some of the worst human-rights violators, including Cuba, Libya, and Sudan. The report also discussed the need for new institutions, such as a peace-building commission, that would support countries emerging from conflict.

Scott Sagan, co-director of CISAC, described the report as hard-hitting, although he said he would have tried to extend the withdrawal clause of the nonproliferation treaty from three months to a year. "I think it's the beginning of some major changes that will be helpful," he said. "We need to get states to work together to reform the U.N. rather than sniping at it."

CISAC was closely involved in the panel's work and was named in a cover letter accompanying the report from Panyarachun to Annan. Co-director Chris Chyba served on the panel's 30-member resource group, providing expertise on nuclear nonproliferation and bioterrorism. Bruce Jones, a former CISAC Hamburg Fellow, acted as Stedman's deputy, and Tarun Chhabra, a graduate of CISAC's undergraduate honors program and recent Marshall Scholarship recipient, worked as a research officer. Political science Professors David Laitin and James Fearon, and SIIS Senior Fellow David Victor, provided, respectively, expertise on terrorism, civil wars, and the environment, Stedman said. "There is an immense amount of Stanford influence in the report," he added.

CISAC also hosted a nuclear nonproliferation workshop for the panel on campus last March and helped organize a meeting during the summer in Bangkok. SIIS co-hosted a conference on governance and sovereignty on campus in April and a meeting at Oxford University in June. CISAC provided workspace to give the research team a quiet place to focus on writing the report's first draft in August.

The report has attracted intense international media interest in part because it calls for expanding the U.N. Security Council, its top decision-making group, from 15 to 24 members. The panel was unable to agree on one proposal and offers two options that would make the council more representative and democratic. "I believe either formula would strengthen the legitimacy in the eyes of the world, by bringing its membership closer to the realities of the 21st century-as opposed to those of 1945, when the U.N. Charter was drafted," Annan wrote in the International Herald Tribune.

According to Stedman, the media has highlighted the Security Council's proposed expansion because so many nations have a stake in it. "But in the absence of a new consensus on international peace and security, expansion of the council will not be effective," he explained.

In March, Annan will use the report to inform a series of proposals he will present to the 191 U.N. member states. These, in turn, will be submitted to a summit of world leaders before the General Assembly convenes next September in New York. Stedman said he has been asked to stay on for another year as a special advisor to the secretary general to keep the United Nations "on message" during negotiations.

Engagement by the United States, which has openly questioned the institution's relevance, will be critical to implementing the report's recommendations, said Stedman, who added that the superpower can benefit from a revamped United Nations. "Putting threats to the United States into a global framework makes it more secure," he said.

Stedman noted that one of the most disturbing aspects of the panel's consultations was listening to government representatives from civil-society organizations dismiss the seriousness of bio- and nuclear terror threats against the United States. "They were essentially denying this as a real threat to American security," he said. "I said it's as real a threat to the U.S. as other threats are to you."

When Stedman accepted the job, he thought he would spend 80 percent of his time on research and writing and 20 percent on consultations and negotiating. In fact, he said, it was the other way around. "It's unlike anything I've ever done," he said. "It's been a blast." In contrast to academia, where a researcher presents his or her best findings and defends them, Stedman was faced with 16 people who would push back, reject, or accept his work. "I had to work to change language to include their concerns," he said. "My biggest concern at the beginning was that the report would be based on the lowest common denominator. It's not."

Stedman said the panel members remained open-minded throughout the year. "They showed flexibility, listened to arguments, and changed their minds," he said. "Our job was to be as persuasive, rigorous, and comprehensive in our analysis as we were able to achieve."

In the end, Stedman said, the report belongs to the panel. "Parts of what the exercise shows is that access to those making policy is really important," he said. "If you do really good work and you have access, you have a chance of being heard. Kofi Annan gave me that opportunity."

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When Norwegian and U.S. scientists launched the Black Brant XII sounding rocket from a small island off Norway's northwest coast on January 25, 1995, they intended for it to harmlessly collect scientific data about the Northern Lights. But when Russia's early warning system radars detected the rocket, they generated an alarm that entered the nuclear forces command and control system and reached the highest levels of government. An accidental nuclear war was never a possibility--by the time the alarm reached Russian President Boris Yeltsin, the rocket had been properly identified--but the incident clearly demonstrated the dangers of a launch-on-warning posture.

A Cold War hangover, launch-on-warning was designed to provide additional protection to nuclear forces by ensuring that a retaliatory attack could be initiated before a first strike obliterated its targets. Implementing launch-on-warning required substantial investment into a network of early warning radars and satellites--plus a command and control system that would allow missiles to be on constant "hair-trigger alert." Its cost proved high enough that only two nuclear powers--the United States and Soviet Union--established a launch-on-warning capability. Nearly 15 years after the Soviet Union's collapse, neither the United States nor Russia have abandoned it.

Numerous proposals have tried to address launch-on-warning concerns. Most point to the Black Brant XII incident as evidence that the precipitous decline of the Russian early warning and command and control systems is the main problem. The argument is simple: If the early warning system was unreliable a decade ago when it was in relatively good shape, imagine how bad the situation is today, after years of decline. Accordingly, many believe the remedy lies in helping Russia compensate for the disrepair, either by creating arrangements that would allow Russia and the United States to share their early warning data, or by providing direct assistance to Russia that would allow it to upgrade its system. These proposals are misguided. Repairing the Russian early warning system would actually increase the danger of an accidental launch.

The reason for this is that the role of the Russian early warning system today is marginal at best. Even in its prime, the system could not provide the data necessary for a launch-on-warning strike. The radar network has always had serious gaps in coverage and the space-based segment of the system was not designed to detect sea-launched missiles. In addition to this, a series of problems plagued the system during its development and early deployment stages. As a result, the Soviet military learned to regard the alarms it generated with suspicion.

The system's deterioration has only added to doubts about its ability to provide a reliable warning. The breakup of the Soviet Union left most of the radars outside Russian territory. At present, Russia operates only three early warning satellites, while minimally reliable coverage of U.S. territory requires at least five. No second-generation satellites, which would expand coverage to the oceans, are operational today. This leaves Russia with an early warning system it can't really trust.

The lack of trust is exactly the reason why the decline of the system is much less dangerous that it may seem. The continued disrepair erodes confidence in the system's performance further and makes it much less likely that an alarm (whether real or false) would be acted upon. Attempts to repair or upgrade the system, on the other hand, would only increase the danger of miscalculation, since such actions would introduce new elements into an already complex system and boost confidence in its performance.

By the same logic, the United States should not be complacent about its early warning system simply because it is thought to be more robust and reliable than its Russian counterpart. High confidence in the U.S. system could make a technical malfunction--should one ever occur--an extremely dangerous event, since U.S. operators would be unlikely to question the information provided by the system.

The best way to deal with the dangers of accidental launch is to remove missiles from hair-trigger alert, for example by introducing physical barriers that would prevent a launch on warning. Technical solutions that have been suggested include removing warheads from missiles or limiting submarine patrol areas. None of these measures have been implemented, since they involve intrusive and cumbersome verification provisions that neither side is willing to accept. What these proposals don't take into account though is that the main goal of de-alerting--reducing the risk of accidental launch--does not require transparency or verification. If a missile does not have a warhead, it won't be able to leave a silo regardless of whether or not one can verify it. In this respect de-alerting is quite different from disarmament, where verification rightfully belongs.

Moreover, transparency could make de-alerting potentially dangerous. Reducing a missile's readiness for all the world to see could create instability during a crisis. If one country decides to bring its missiles back into operation, its counterpart might feel the need to do the same lest its forces remain unprepared for a launch. This might create a rush to re-alert forces, and the dangers associated with re-alerting could outweigh any de-alerting benefits. Ideally, de-alerting measures should be completely undetectable. This approach would remove missiles from the launch-on-warning equation while minimizing the instabilities associated with re-alerting.

With the verification hurdle removed, there is no reason why the United States and Russia should not make a public commitment to de-alert their strategic arsenals. They don't even need to do it together. De-alerting is beneficial even when done unilaterally. Of course, there will be plenty of questions about the value of commitments that are neither enforceable nor verifiable. But the value would be quite real--thousands of missiles would no longer be on hair-trigger alert. And the next time Norway launches a scientific sounding rocket, we can all breathe a little easier.

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Pavel Podvig
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In 1920, the Irish Republican Army reportedly considered a terrifying new weapon: typhoid-contaminated milk. Reading from an IRA memo he claimed had been captured in a recent raid, Sir Hamar Greenwood described to Parliament the ease with which "fresh and virulent cultures" could be obtained and introduced into milk served to British soldiers. Although the plot would only target the military, the memo expressed concern that the disease might spread to the general population.

Although the IRA never used this weapon, the incident illustrates that poisoning a nation's milk supply with biological agents hardly ranks as a new concept. Yet just two weeks ago, the National Academy of Sciences' journal suspended publication of an article analyzing the vulnerability of the U.S. milk supply to botulinum toxin, because the Department of Health and Human Services warned that information in the article provided a "road map for terrorists."

That approach may sound reasonable, but the effort to suppress scientific information reflects a dangerously outdated attitude. Today, information relating to microbiology is widely and instantly available, from the Internet to high school textbooks to doctoral theses. Our best defense against those who would use it as a weapon is to ensure that our own scientists have better information. That means encouraging publication.

The article in question, written by Stanford University professor Lawrence Wein and graduate student Yifan Liu, describes a theoretical terrorist who obtains a few grams of botulinum toxin on the black market and pours it into an unlocked milk tank. Transferred to giant dairy silos, the toxin contaminates a much larger supply. Because even a millionth of a gram may be enough to kill an adult, hundreds of thousands of people die. (Wein summarized the article in an op-ed he wrote for the New York Times.) The scenario is frightening, and it is meant to be -- the authors want the dairy industry and its federal regulators to take defensive action.

The national academy's suspension of the article reflects an increasing concern that publication of sensitive data can provide terrorists with a how-to manual, but it also brings to the fore an increasing anxiety in the scientific community that curbing the dissemination of research may impair our ability to counter biological threats. This dilemma reached national prominence in fall 2001, when 9/11 and the anthrax mailings drew attention to another controversial article. This one came from a team of Australian scientists.

Approximately every four years, Australia suffers a mouse infestation. In 1998, scientists in Canberra began examining the feasibility of using a highly contagious disease, mousepox, to alter the rodents' ability to reproduce. Their experiments yielded surprising results. Researchers working with mice naturally resistant to the disease found that combining a gene from the rodent's immune system (interleukin-4) with the pox virus and inserting the pathogen into the animals killed them -- all of them. Plus 60 percent of the mice not naturally resistant who had been vaccinated against mousepox.

In February 2001 the American SocietyforMicrobiologists' (ASM) Journal of Virology reported the findings. Alarm ensued. The mousepox virus is closely related to smallpox -- one of the most dangerous pathogens known to humans. And the rudimentary nature of the experiment demonstrated how even basic, inexpensive microbiology can yield devastating results.

When the anthrax attacks burst into the news seven months later, the mousepox case became a lightning rod for deep-seated fears about biological weapons. The Economist reported rumors about the White House pressuring American microbiology journals to restrict publication of similar pieces. Samuel Kaplan, chair of the ASM publications board, convened a meeting of the editors in chief of the ASM's nine primary journals and two review journals. Hoping to head off government censorship, the organization -- while affirming its earlier decision -- ordered its peer reviewers to take national security and the society's code of ethics into account.

Not only publications came under pressure, but research itself. In spring 2002 the newly formed Department of Homeland Security developed an information-security policy to prevent certain foreign nationals from gaining access to a range of experimental data. New federal regulations required that particular universities and laboratories submit to unannounced inspections, register their supplies and obtain security clearances. Legislation required that all genetic engineering experiments be cleared by the government.

On the mousepox front, however, important developments were transpiring. Because the Australian research had entered the public domain, scientists around the world began working on the problem. In November 2003, St. Louis University announced an effective medical defense against a pathogen similar to -- but even more deadly than -- the one created in Australia. This result would undoubtedly not have been achieved, or at least not as quickly, without the attention drawn by the ASM article.

The dissemination of nuclear technology presents an obvious comparison. The 1946 Atomic Energy Act classifies nuclear information "from birth." Strong arguments can be made in favor of such restrictions: The science involved in the construction of the bomb was complex and its application primarily limited to weapons. A short-term monopoly was possible. Secrecy bought the United States time to establish an international nonproliferation regime. And little public good would have been achieved by making the information widely available.

Biological information and the issues surrounding it are different. It is not possible to establish even a limited monopoly over microbiology. The field is too fundamental to the improvement of global public health, and too central to the development of important industries such as pharmaceuticals and plastics, to be isolated. Moreover, the list of diseases that pose a threat ranges from high-end bugs, like smallpox, to common viruses, such as influenza. Where does one draw the line for national security?

Experience suggests that the government errs on the side of caution. In 1951, the Invention Secrecy Act gave the government the authority to suppress any design it deemed detrimental to national defense. Certain areas of research-- atomic energy and cryptography -- consistently fell within its purview. But the state also placed secrecy orders on aspects of cold fusion, space technology, radar missile systems, citizens band radio voice scramblers, optical engineering and vacuum technology. Such caution, in the microbiology realm, may yield devastating results. It is not in the national interest to stunt research into biological threats.

In fact, the more likely menace comes from naturally occurring diseases. In 1918 a natural outbreak of the flu infected one-fifth of the world's population and 25 percent of the United States'. Within two years it killed more than 650,000 Americans, resulting in a 10-year drop in average lifespan. Despite constant research into emerging strains, the American Lung Association estimates that the flu and related complications kill 36,000 Americans each year. Another 5,000 die annually from food-borne pathogens -- an extraordinarily large number of which have no known cure. The science involved in responding to these diseases is incremental, meaning that small steps taken by individual laboratories around the world need to be shared for larger progress to be made.

The idea that scientific freedom strengthens national security is not new. In the early 1980s, a joint Panel on Scientific Communication and National Security concluded security by secrecywasuntenable. Its report called instead for security by accomplishment -- ensuring strength through advancing research. Ironically, one of the three major institutions participating was the National Academy of Sciences -- the body that suspended publication of the milk article earlier this month.

The government has a vested interest in creating a public conversation about ways in which our society is vulnerable to attack. Citizens are entitled to know when their milk, their water, their bridges, their hospitals lack security precautions. If discussion of these issues is censored, the state and private industry come under less pressure to alter behavior; indeed, powerful private interests may actively lobby against having to install expensive protections. And failure to act may be deadly.

Terrorists will obtain knowledge. Our best option is to blunt their efforts to exploit it. That means developing, producing and stockpiling effective vaccines. It means funding research into biosensors -- devices that detect the presence of toxic substances in the environment -- and creating more effective reporting requirements for early identification of disease outbreaks. And it means strengthening our public health system.

For better or worse, the cat is out of the bag -- something brought home to me last weekend when I visited the Tech Museum of Innovation in San Jose. One hands-on exhibit allowed children to transfer genetic material from one species to another. I watched a 4-year-old girl take a red test tube whose contents included a gene that makes certain jellyfish glow green. Using a pipette, she transferred the material to a blue test tube containing bacteria. She cooled the solution, then heated it, allowing the gene to enter the bacteria. Following instructions on a touch-screen computer, she transferred the contents to a petri dish, wrote her name on the bottom, and placed the dish in an incubator. The next day, she could log on to a Web site to view her experiment, and see her bacteria glowing a genetically modified green.

In other words, the pre-kindergartener (with a great deal of help from the museum) had conducted an experiment that echoed the Australian mousepox study. Obviously, this is not something the child could do in her basement. But just as obviously, the state of public knowledge is long past anyone's ability to censor it.

Allowing potentially harmful information to enter the public domain flies in the face of our traditional way of thinking about national security threats. But we have entered a new world. Keeping scientists from sharing information damages our ability to respond to terrorism and to natural disease, which is more likely and just as devastating. Our best hope to head off both threats may well be to stay one step ahead.

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In 1920, the Irish Republican Army reportedly considered a terrifying new weapon: typhoid-contaminated milk. Reading from an IRA memo he claimed had been captured in a recent raid, Sir Hamar Greenwood described to Parliament the ease with which "fresh and virulent cultures" could be obtained and introduced into milk served to British soldiers. Although the plot would only target the military, the memo expressed concern that the disease might spread to the general population.

Although the IRA never used this weapon, the incident illustrates that poisoning a nation's milk supply with biological agents hardly ranks as a new concept. Yet just two weeks ago, the National Academy of Sciences' journal suspended publication of an article analyzing the vulnerability of the U.S. milk supply to botulinum toxin, because the Department of Health and Human Services warned that information in the article provided a "road map for terrorists."

That approach may sound reasonable, but the effort to suppress scientific information reflects a dangerously outdated attitude. Today, information relating to microbiology is widely and instantly available, from the Internet to high school textbooks to doctoral theses. Our best defense against those who would use it as a weapon is to ensure that our own scientists have better information. That means encouraging publication.

The article in question, written by Stanford University professor Lawrence Wein and graduate student Yifan Liu, describes a theoretical terrorist who obtains a few grams of botulinum toxin on the black market and pours it into an unlocked milk tank. Transferred to giant dairy silos, the toxin contaminates a much larger supply. Because even a millionth of a gram may be enough to kill an adult, hundreds of thousands of people die. (Wein summarized the article in an op-ed he wrote for the New York Times.) The scenario is frightening, and it is meant to be -- the authors want the dairy industry and its federal regulators to take defensive action.

The national academy's suspension of the article reflects an increasing concern that publication of sensitive data can provide terrorists with a how-to manual, but it also brings to the fore an increasing anxiety in the scientific community that curbing the dissemination of research may impair our ability to counter biological threats. This dilemma reached national prominence in fall 2001, when 9/11 and the anthrax mailings drew attention to another controversial article. This one came from a team of Australian scientists.

Approximately every four years, Australia suffers a mouse infestation. In 1998, scientists in Canberra began examining the feasibility of using a highly contagious disease, mousepox, to alter the rodents' ability to reproduce. Their experiments yielded surprising results. Researchers working with mice naturally resistant to the disease found that combining a gene from the rodent's immune system (interleukin-4) with the pox virus and inserting the pathogen into the animals killed them -- all of them. Plus 60 percent of the mice not naturally resistant who had been vaccinated against mousepox.

In February 2001 the American SocietyforMicrobiologists' (ASM) Journal of Virology reported the findings. Alarm ensued. The mousepox virus is closely related to smallpox -- one of the most dangerous pathogens known to humans. And the rudimentary nature of the experiment demonstrated how even basic, inexpensive microbiology can yield devastating results.

When the anthrax attacks burst into the news seven months later, the mousepox case became a lightning rod for deep-seated fears about biological weapons. The Economist reported rumors about the White House pressuring American microbiology journals to restrict publication of similar pieces. Samuel Kaplan, chair of the ASM publications board, convened a meeting of the editors in chief of the ASM's nine primary journals and two review journals. Hoping to head off government censorship, the organization -- while affirming its earlier decision -- ordered its peer reviewers to take national security and the society's code of ethics into account.

Not only publications came under pressure, but research itself. In spring 2002 the newly formed Department of Homeland Security developed an information-security policy to prevent certain foreign nationals from gaining access to a range of experimental data. New federal regulations required that particular universities and laboratories submit to unannounced inspections, register their supplies and obtain security clearances. Legislation required that all genetic engineering experiments be cleared by the government.

On the mousepox front, however, important developments were transpiring. Because the Australian research had entered the public domain, scientists around the world began working on the problem. In November 2003, St. Louis University announced an effective medical defense against a pathogen similar to -- but even more deadly than -- the one created in Australia. This result would undoubtedly not have been achieved, or at least not as quickly, without the attention drawn by the ASM article.

The dissemination of nuclear technology presents an obvious comparison. The 1946 Atomic Energy Act classifies nuclear information "from birth." Strong arguments can be made in favor of such restrictions: The science involved in the construction of the bomb was complex and its application primarily limited to weapons. A short-term monopoly was possible. Secrecy bought the United States time to establish an international nonproliferation regime. And little public good would have been achieved by making the information widely available.

Biological information and the issues surrounding it are different. It is not possible to establish even a limited monopoly over microbiology. The field is too fundamental to the improvement of global public health, and too central to the development of important industries such as pharmaceuticals and plastics, to be isolated. Moreover, the list of diseases that pose a threat ranges from high-end bugs, like smallpox, to common viruses, such as influenza. Where does one draw the line for national security?

Experience suggests that the government errs on the side of caution. In 1951, the Invention Secrecy Act gave the government the authority to suppress any design it deemed detrimental to national defense. Certain areas of research-- atomic energy and cryptography -- consistently fell within its purview. But the state also placed secrecy orders on aspects of cold fusion, space technology, radar missile systems, citizens band radio voice scramblers, optical engineering and vacuum technology. Such caution, in the microbiology realm, may yield devastating results. It is not in the national interest to stunt research into biological threats.

In fact, the more likely menace comes from naturally occurring diseases. In 1918 a natural outbreak of the flu infected one-fifth of the world's population and 25 percent of the United States'. Within two years it killed more than 650,000 Americans, resulting in a 10-year drop in average lifespan. Despite constant research into emerging strains, the American Lung Association estimates that the flu and related complications kill 36,000 Americans each year. Another 5,000 die annually from food-borne pathogens -- an extraordinarily large number of which have no known cure. The science involved in responding to these diseases is incremental, meaning that small steps taken by individual laboratories around the world need to be shared for larger progress to be made.

The idea that scientific freedom strengthens national security is not new. In the early 1980s, a joint Panel on Scientific Communication and National Security concluded security by secrecywasuntenable. Its report called instead for security by accomplishment -- ensuring strength through advancing research. Ironically, one of the three major institutions participating was the National Academy of Sciences -- the body that suspended publication of the milk article earlier this month.

The government has a vested interest in creating a public conversation about ways in which our society is vulnerable to attack. Citizens are entitled to know when their milk, their water, their bridges, their hospitals lack security precautions. If discussion of these issues is censored, the state and private industry come under less pressure to alter behavior; indeed, powerful private interests may actively lobby against having to install expensive protections. And failure to act may be deadly.

Terrorists will obtain knowledge. Our best option is to blunt their efforts to exploit it. That means developing, producing and stockpiling effective vaccines. It means funding research into biosensors -- devices that detect the presence of toxic substances in the environment -- and creating more effective reporting requirements for early identification of disease outbreaks. And it means strengthening our public health system.

For better or worse, the cat is out of the bag -- something brought home to me last weekend when I visited the Tech Museum of Innovation in San Jose. One hands-on exhibit allowed children to transfer genetic material from one species to another. I watched a 4-year-old girl take a red test tube whose contents included a gene that makes certain jellyfish glow green. Using a pipette, she transferred the material to a blue test tube containing bacteria. She cooled the solution, then heated it, allowing the gene to enter the bacteria. Following instructions on a touch-screen computer, she transferred the contents to a petri dish, wrote her name on the bottom, and placed the dish in an incubator. The next day, she could log on to a Web site to view her experiment, and see her bacteria glowing a genetically modified green.

In other words, the pre-kindergartener (with a great deal of help from the museum) had conducted an experiment that echoed the Australian mousepox study. Obviously, this is not something the child could do in her basement. But just as obviously, the state of public knowledge is long past anyone's ability to censor it.

Allowing potentially harmful information to enter the public domain flies in the face of our traditional way of thinking about national security threats. But we have entered a new world. Keeping scientists from sharing information damages our ability to respond to terrorism and to natural disease, which is more likely and just as devastating. Our best hope to head off both threats may well be to stay one step ahead.

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In May, North Korean leaders hinted to visiting U.S scholar John W. Lewis that they're willing to resume negotiations with the United States on nuclear arms. But if those talks are revived, North Korea wants to focus on mutual steps toward a denuclearized Korean peninsula. The Bush administration has said repeatedly it doesn't want to depart from six-way nuclear talks. (Mike Shuster's full report on NPR's Morning Edition is linked below.)

Daniel Sneider writes, "There is a small crack in the otherwise closed door between the United States and North Korea. That is part of the message Stanford Professor John W. Lewis, an expert on Northeast Asian security issues, brought back this past week from a visit to China and North Korea." (Sneider's column, "Window is closing for U.S. in N. Korean nuclear talks," is linked below.)

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Robert McNamara is worried. He knows how close we've come. His counsel helped the Kennedy administration avert nuclear catastrophe during the Cuban Missile Crisis. Today, he believes the United States must no longer rely on nuclear weapons as a foreign-policy tool. To do so is immoral, illegal, and dreadfully dangerous.

This article, the cover story for the May/June 2005 issue of Foreign Policy, began as a talk McNamara delivered at Stanford to CISAC researchers, staff, and friends on Oct. 18, 2004.

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