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Reprinted with permission from Washingtonpost.Newsweek Interactive Company and The Washington Post

North Korea's declared nuclear bomb test program will increase the incentives for other nations to go nuclear, will endanger security in the region and could ultimately result in nuclear terrorism. While this test is the culmination of North Korea's long-held aspiration to become a nuclear power, it also demonstrates the total failure of the Bush administration's policy toward that country. For almost six years this policy has been a strange combination of harsh rhetoric and inaction.

President Bush, early in his first term, dubbed North Korea a member of the "axis of evil" and made disparaging remarks about Kim Jong Il. He said he would not tolerate a North Korean nuclear weapons program, but he set no bounds on North Korean actions.

The most important such limit would have been on reprocessing spent fuel from North Korea's reactor to make plutonium. The Clinton administration declared in 1994 that if North Korea reprocessed, it would be crossing a "red line," and it threatened military action if that line was crossed. The North Koreans responded to that pressure and began negotiations that led to the Agreed Framework. The Agreed Framework did not end North Korea's aspirations for nuclear weapons, but it did result in a major delay. For more than eight years, under the Agreed Framework, the spent fuel was kept in a storage pond under international supervision.

Then in 2002, the Bush administration discovered the existence of a covert program in uranium, evidently an attempt to evade the Agreed Framework. This program, while potentially serious, would have led to a bomb at a very slow rate, compared with the more mature plutonium program. Nevertheless, the administration unwisely stopped compliance with the Agreed Framework. In response the North Koreans sent the inspectors home and announced their intention to reprocess. The administration deplored the action but set no "red line." North Korea made the plutonium.

The administration also said early this summer that a North Korean test of long-range missiles was unacceptable. North Korea conducted a multiple-launch test of missiles on July 4. Most recently, the administration said a North Korean test of a nuclear bomb would be unacceptable. A week later North Korea conducted its first test.

It appears that the administration is deeply divided on how to deal with North Korea, with some favoring negotiation and others economic and political pressure to force a regime change. As a result, while the administration was willing to send a representative to the six-party talks organized by the Chinese in 2003, it had no apparent strategy for dealing with North Korea there or for providing leadership to the other parties. In the meantime, it increased economic pressure on Pyongyang. Certainly an argument can be made for such pressure, but it would be naive to think it could succeed without the support of the Chinese and South Korean governments, neither of which backs such action. North Korea, sensing the administration's paralysis, has moved ahead with an aggressive and dangerous nuclear program.

So what can be done now that might have a constructive influence on North Korea's behavior? The attractive alternatives are behind us. There should and will be a U.N. resolution condemning the test. The United Nations may respond to calls from the United States and Japan for strong sanctions to isolate North Korea and cut off trade with it. But North Korea is already the most isolated nation in the world, and its government uses this isolation to its advantage. Stronger sanctions on materials that might be of use to the nuclear program are reasonable, but the horse is already out of the barn. Economic sanctions to squeeze North Korea would increase the suffering of its people but would have little effect on the elite. In any event, they would be effective only if China and South Korea fully participated, and they have shown no inclination to do so.

There will be calls to accelerate our national missile defense program. But the greatest danger to the United States from this program is not that North Korea would be willing to commit suicide by firing a missile at the United States, even if it did develop one of sufficient range. Rather, it is the possibility that the North Koreans will sell one of the bombs or some of their plutonium to a terrorist group. The president has warned North Korea not to transfer any materials from its nuclear program. But the warnings we have sent to North Korea these past six years have gone unheeded and its acts unpunished. It is not clear that this latest one will have any greater effect. If a warning is to have a chance of influencing North Korea's behavior it has to be much more specific. It would have to promise retaliation against North Korea if a terrorist detonated a nuclear bomb in one of our cities. It must be backed by a meaningful forensics program that can identify the source of a nuclear bomb.

This test will certainly send an undesirable message to Iran, and that damage has already been done. But it is important to try to keep this action from precipitating a nuclear arms race in the Asia-Pacific region. Both Japan and South Korea have the capability to move quickly to full nuclear-weapon status but have not done so because they have had confidence in our nuclear umbrella. They may now reevaluate their decision. We should consult closely with Japan and South Korea to reassure them that they are still under our umbrella and that we have the will and the capability to regard an attack on them as an attack on the United States. This may be necessary to discourage them from moving forward with nuclear deterrence of their own.

Our government's inattention has allowed North Korea to establish a new and dangerous threat to the Asia-Pacific region. It is probably too late to reverse that damage, but serious attention to this problem can still limit the extent of the damage.

The writer was secretary of defense from 1994 to 1997.

Copyright 2006, Washingtonpost.Newsweek Interactive and The Washington

Post. All rights Reserved.

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The Society for the History of Technology has awarded its 2006 Brooke Hindle Fellowship to Sonja Schmid, a CISAC social science research associate and lecturer in Stanford's Program on Science, Technology and Society.

Schmid accepted the $10,000 award at the society's annual conference on Oct. 14. She will use it to support additional research in Russia for a book she is completing on the effects of the Chernobyl disaster on the Soviet and Russian nuclear power industry.

Tentatively titled "Producing Power: The Construction of a Civilian Nuclear Industry in the Soviet Union," the book begins with the Chernobyl explosion of April 26, 1986--"the worst accident at a civilian nuclear facility ever," Schmid notes.

The explosion ignited a fire that burned for more than 10 days and released radioactive materials over a large area of Belarus, Russia and Ukraine. Some 116,000 people evacuated the area that spring and another 220,000 moved later, according to a 2005 report by a forum the International Atomic Energy Agency convened to assess the accident's economic and health legacies.

The tragedy also resulted in the trial and sentencing of plant operators and "dismissal of the Chernobyl-type reactor design as 'inherently unsafe,'" Schmid explains. Her research examines the development of institutional structures and professional cultures within the Soviet civilian nuclear industry and the history of Soviet reactor design choices.

Schmid has done extensive research in Russian archives that opened after the fall of the Soviet Union. However, "much of this history was never written down," she said, so she also interviewed more than 20 senior nuclear specialists in Russia.

Now filling in details on her largely completed historical analysis, Schmid expects to finish the book manuscript by next summer. The fellowship selection committee called her work "a path-breaking contribution to the field" of technology history. Schmid's "study revises much of what we thought we knew about the development of nuclear power in the Soviet Union," the committee wrote.

On a trip to Russia in September and October 2006, she talked with high-ranking specialists in the Soviet and current Russian nuclear industry, some of whom she met through CISAC visiting professor Siegfried Hecker. A former director of the Los Alamos National Laboratory, Hecker continues to work with Russian scientists in cooperative threat reduction programs to secure former Soviet nuclear materials that could be used for weapons.

A source Schmid has yet to tap is the Archive of the Russian Federal Agency for Nuclear Energy, which maintains records on both military and civilian nuclear programs. The agency "has been publishing excellent series of documents on the history of the Soviet atomic bomb, or the military program," Schmid said, "but their documents on the civilian program so far remain classified." She said she will try again and that on this last visit to Russia she "was encouraged to keep doing so."

Her painstaking research stands to illuminate technological decisions with profound consequences. "While everything about the Chernobyl accident was Soviet--the reactor design, the attitude of operators, the bureaucracy--it shook a system that was designed to be safe," Schmid said. "The system, by its own standards and norms, was normal and perfectly functional," she added.

"Chernobyl is not something that 'could only happen in the Soviet Union,'" Schmid cautioned. "It could happen elsewhere."

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This article presents a review of the sensitivities to proliferation attempts in each of the different stages of the commercial nuclear fuel cycle and within the nuclear power industry. As the global nuclear power industry may be on the brink of a major expansion that might rival its original growth at the inception of the nuclear age, the question is: Would this second expansion create uncontrollable proliferation risks in its wake? The basic answer is that the nuclear power industry in itself does not pose a direct proliferation threat; however, various elements of the nuclear fuel cycle could create different proliferation sensitivities if not safeguarded carefully. The first element of securing the nuclear fuel cycle is the understanding of which elements pose the greatest potential for successful proliferation attempts. These issues and several institutional and technical mitigation strategies to reduce the potential for possible proliferation are discussed here.

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Nuclear fuel supply assurance is a long-term issue that has been studied in various venues since the beginning of the nuclear area. This topic has recently gained greater urgency with various countries now embarking on their own nuclear power programs and considering construction of their own fuel cycle facilities, including enrichment plants, to provide for their own fuel. Some of these fuel facilities could however be diverted for weapons material production within clandestine military programs. In this context the assured provision of internationally supplied nuclear fuel and fuel supply guarantees are meant to discourage new nuclear countries from developing domestic sensitive fuel cycle facilities. An IAEA initiative on this topic has culminated in a September 2006 IAEA Special Event Seminar held in conjunction with the 50th General Conference. Eleven different proposals for instituting fuel supply assurance arrangements were presented (some prior to and some during) the meeting. Noted among them was the NTI proposal that included a commitment from Warren Buffet to contribute 50 Million Dollars towards the purchase of a Uranium stockpile that would form the basis of a Nuclear Fuel Bank to be managed by the IAEA.

In this presentation I will review and comment on the recent supply assurance proposals made. I will discuss technical and institutional issues I have raised in reviewing these proposals, and I will rank all the proposals based on their ease of implementation and contribution to nonproliferation.

Chaim Braun is a CISAC science fellow working on issues of nuclear power and nonproliferation. Prior to his Stanford position, Braun worked in various technical and management positions in Altos Management Partners, Bechtel Power Corporation, United Engineers and Constructors, the Electric Power Research Institute (EPRI), and Brookhaven National Laboratory (BNL). While at CISAC Chaim authored papers with Chris Chyba on "Proliferation Rings" and with Mike May on "International Regime for Fresh Fuel Supply and Spent Fuel Disposal." He also co-authored two chapters in the CISAC book , U.S. Nuclear Weapons Policy: Confronting Today's Threats, made numerous technical presentations, and was instrumental in bringing to CISAC the research project on U.N. Security Council Resolution 1540.

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On May 5, 2006, Brazil officially inaugurated a plant that will produce enriched uranium to supply the country's two nuclear power reactors. Brazilian officials have claimed that providing domestic enrichment services will account for savings to the national nuclear industry. This work is a preliminary evaluation of the economic relevance of the Brazilian enrichment program, taking into account cost of production and the market price for uranium enrichment.

Belkis Cabrera-Palmer is a science fellow at the Center for International Security and Cooperation, Stanford University. She received her Ph.D. in Physics form Syracuse University in May 2005. Her research interest comprises the study of energy resources in Latin America, and this year she has focused on the role of nuclear power in electricity generation in Brazil. Her current research project is entitled "On the Uranium Enrichment Program in Brazil", and aims to evaluate the economic relevance a national enrichment program has in Brazil's nuclear industry.

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The nuclear nonproliferation regime is "dysfunctional" and in serious need of repair, said Mohamed ElBaradei, director-general of the International Atomic Energy Agency, in a lecture titled "The Nuclear Future" at Stanford's Memorial Auditorium. ElBaradei, who, with the IAEA he directs, received the 2005 Nobel Peace Prize, spoke at FSI's Payne Lecture, with CISAC director Scott D. Sagan posing questions and moderating.

The nuclear regime in place since the Nonproliferation Treaty (NPT) took effect in 1970 is broken and needs to be fixed, the world's highest-ranking nuclear official told a half-full Memorial Auditorium in a wide-ranging lecture about the future of nuclear energy and weapons yesterday afternoon.

"We have a dysfunctional system -- system that cannot endure," said Mohamed ElBaradei, the director general of the International Atomic Energy Agency (IAEA). "We're reaching the fork in the road. Events in the last few years have made it clear that we need to change course."

The big news from ElBaradei's speech was his support for American entreaties to Iran. But the 2005 Nobel Peace Prize recipient also commented on North Korea, India, Pakistan, Iraq, terrorism, disarmament and the future of nuclear energy.

He said there are probably eight current nuclear states, excluding North Korea. He worried aloud that countries which can currently produce nuclear energy peacefully are only six months away from developing nuclear weapons for military purposes.

"Acquiring the technology to enrich uranium or reprocess uranium basically is the key to develop nuclear weapons as we have seen in Asia and Iran," he said. "They are virtually weapons states because in six months time if they decide for security reasons to develop their own weapon, they are there."

Iraq

While not a household name, ElBaradei was a prominent figure in the news as the lead weapons inspector in Iraq during the run-up to the 2003 American invasion. He said at the time that he could not find evidence of Iraqi weapons of mass destruction, but he would not conclude that there were no weapons in the country or that Saddam Hussein did not have a program.

ElBaradei asked for more time to complete inspections, but the Bush administration declined his request and decided to invade. The U.S. never found the nuclear and biological material that some had promised existed.

"Luckily...well I'm not sure luckily...we were proven right that there was no nuclear or any weapon of mass destruction in Iraq," he said. "But I hope that all of us have learned from the Iraq experience that we cannot just jump the gun. You have to be absolutely sure of the facts."

India

ElBaradei surprised observers when he supported the U.S. agreement with India earlier this year, which allowed the country to continue developing nuclear weapons and energy. He said the agreement with India did not endorse its proliferation activities but was indicative of the kind of outside-the-box thinking the international community needs when considering the spread of nuclear weapons and material.

"The end result is India coming closer and working with the rest of the world," he said. "It is not a perfect agreement, but it has a lot of advantages. From the safety, security and nonproliferation perspective, I see that agreement as a win-win situation."

Pakistan

Pakistan developed nuclear weapons as a response to India. Some have criticized Pakistan for its poor stewardship and control of the bomb, pointing out that weapons were almost fired during a skirmish over the disputed Kashmir region.

AQ Kahn, a senior nuclear scientist who helped Pakistan join the exclusive nuclear club, was caught selling compact discs and other information about bombs to several other countries.

"How much damage was done in the process we don't know," ElBaradei said.

The release of this nuclear material demonstrates the need for a "more robust verification system," he said, adding that Pakistan has come closer to the international community in recent years.

North Korea

Kim Jong Il expelled all IAEA inspectors in Dec. 2002, withdrew from the NPT in Jan. 2003 and announced in February 2005 that his military had a nuclear deterrent.

"North Korea is still a major problem," ElBaradei said. "We don't talk about it enough, but North Korea is declaring right now that they have a nuclear weapon. And the longer that they continue to be in that status, the more it is accepted in the collective conscious. This would be terrible because it will have a lot of negative ramifications in South Korea and Japan."

ElBaradei said ongoing negotiations are an important development but more needs to be done.

"What we see with the current six-party talks should have taken place years ago," he said.

Nuclear Proliferation

ElBaradei stressed that he understands the value of nuclear power, which produces much of the developed world's energy. Reducing its use would create more dependence on greenhouse gas-creating fossil fuels, he said.

"We need to use nuclear energy responsibly to maximize benefit and minimize risk," he said.

He said his "number one nightmare scenario" is a terrorist group acquiring nuclear technology since terrorists are not deterred by the possibility of reprisal.

In the post-Cold War world, ElBaradei said he could see no justification for the U.S. and Russia to maintain their nuclear arsenals on ready alert to fire with thirty minutes notice. He called on America to lead by example and continue to disarm its nuclear stockpile.

"Rather than pass judgment, I'd definitely like to say the U.S. should do more in leading by example in terms of nuclear disarmament," he said.

In September 2005, ElBaradei was reappointed to a third term as director general of IAEA. The United States had considered holding up his nomination but dropped its objections under pressure from European allies, who admire the former law professor from New York University.

Diplomat to the Core

The Egyptian native's sometimes broken English was interspersed with self-corrections and careful legalese nuance. ElBaradei answered questions posed by Political Science Prof. Scott Sagan, the director of the Center for International Security and Cooperation.

When Sagan made bold pronouncements about different country's nuclear activities, including the United States' "colossal failure" when North Korea violated the NPT, ElBaradei seemed careful not to point fingers, play the blame game or make enemies. Nonetheless, for a senior United Nations official, his speech was notably blunt.

"There's no international public servant whose integrity and work I admire more than yours," Sagan told ElBaradei.

Accompanied by his wife, ElBaradei spent the day at the University visiting with faculty and students. He spoke at a lunch sponsored by the Freeman Spogli Institute for International Studies and traveled to Sagan's home for a dinner with invited guests. He left the area at 8:30 p.m.

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Sonja Schmid is a social science research associate at Stanford University. Having received her Ph.D. in Science & Technology Studies from Cornell University, she is now a science fellow at the Center for International Security and Cooperation, and affiliated with the Program in Science, Technology and Society at Stanford. Her research has focused on understanding complex decision-making processes at the interface between science, technology, and the state in the Cold War Soviet context, and is based on extensive archival research and narrative interviews with nuclear energy specialists in Russia. She is currently working on a book about reactor design choices and the development of the civilian nuclear industry in the Soviet Union. In addition, she is involved in an international research project on Cold War Technopolitics and Colonialism, where she works on Soviet technology transfer to Central and Eastern Europe. Her research interests also include risk communication, and the popularization of science and technology, subjects on which she has published in the past.

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For almost 20 years the Energy Department has been investigating and developing Nevada's Yucca Mountain as the site for a deep underground repository to accept spent fuel from all the power reactors and high level waste left over from bomb programs. The future of US nuclear energy is widely thought to be tied to the success of the project. In 2002 Congress gave DOE the green light to take the next step to submit an NRC license application demonstrating compliance with applicable standards. DOE promised such an application in December 2004. It delayed and delayed and now DOE no longer has a date for submitting an NRC application, but it will be no earlier than 2008.

What's holding it up? What is the history of the project? What are its technical and managerial and legal problems? What has been the effect of Nevada's opposition? How will recent project changes and the administration's new nuclear policy (GNEP) affect Yucca Mountain? What are the prospects for project licensing and completion? Is Yucca Mountain the only option for dealing with the country's spent fuel?

Dr. Victor Gilinsky is a Washington, D.C.-based consultant on energy. He has been active on proliferation issues for many years, going back to his early work at RAND in Santa Monica, California. He joined RAND soon after receiving a PhD in physics from the California Institute of Technology in 1961. In 1971 he moved to the Atomic Energy Commission in Washington, D.C., where he was assistant director for policy and program review. From 1973 to 1975, he was head of the RAND Physical Sciences Department. From 1975 to 1984, he served on the Nuclear Regulatory Commission (NRC), having been appointed by President Gerald Ford and reappointed by President Jimmy Carter. During his NRC tenure, Dr Gilinsky was heavily involved in nuclear-export issues. In 1982 he received Caltech's Distinguished Alumnus Award.

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Recent events in Iran and elsewhere demand a reevaluation of the need for increasing nuclear fuel supplies and assuring reliable flow of fuel to nuclear power user states vis-à-vis the need for strengthened security for all countries against the use of weapons of mass destruction (WMD). The right of countries to a guaranteed supply of nuclear energy for peaceful uses must be balanced with the global community's desire to limit flows of nuclear material and sensitive nuclear facilities that could create opportunities for nuclear proliferation. This article proposes elements of an international regime of fresh fuel supply and spent fuel disposal that will guarantee fresh fuel supplies to countries honoring their obligations under the Treaty for the Non-Proliferation of Nuclear Weapons (NPT), while reducing concerns about diversion of spent fuel for weapons purposes. A specific application to countries with small pre-commercial uranium enrichment plants is also proposed.

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Michael May is emeritus professor Emeritus (research) in the Stanford University School of Engineering and a senior fellow with FSI. He is the former co-director of CISAC, having served seven years in that capacity through January 2000.

May is emeritus director of the Lawrence Livermore National Laboratory, where he worked from 1952 to 1988, with some brief periods away from the laboratory. While there, he held a variety of research and development positions, serving as director of the laboratory from 1965 to 1971. May was technical adviser to the Threshold Test Ban Treaty negotiating team; a member of the U.S. delegation to the Strategic Arms Limitation Talks; and at various times has been a member of the Defense Science Board, the General Advisory Committee to the AEC, the Secretary of Energy Advisory Board, the RAND Corporation Board of Trustees, and the Committee on International Security and Arms Control of the National Academy of Sciences. He is a member of the Council on Foreign Relations and the Pacific Council on International Policy, and a Fellow of the American Physical Society and the American Association for the Advancement of Science.

May received the Distinguished Public Service and Distinguished Civilian Service Medals from the Department of Defense, and the Ernest Orlando Lawrence Award from the Atomic Energy Commission, as well as other awards. May's current research interests are in the area of safeguarding the nuclear fuel cycle, nuclear terrorism, energy, security and environment, and the relation of nuclear weapons and foreign policy.

Chaim Braun is a vice president of Altos Management Partners, Inc., and a CISAC science fellow and affiliate. He is a member of the Near-Term Deployment and the Economic Cross-Cut Working Groups of the Department of Energy (DOE) Generation IV Roadmap study. He conducted several nuclear economics-related studies for the DOE Nuclear Energy Office, the Energy Information Administration, the Electric Power Research Institute, the Nuclear Energy Institute, Non-Proliferation Trust International, and others.

Braun has worked as a member of Bechtel Power Corporation's Nuclear Management Group, and led studies on power plant performance and economics used to support maintenance services. Braun has worked on a study of safeguarding the Agreed Framework in North Korea, he was the co-leader of a NATO Study of Terrorist Threats to Nuclear Power Plants, led CISAC's Summer Study on Terrorist Threats to Research Reactors, and most recently co-authored an article with CISAC Co-Director Chris Chyba on nuclear proliferation rings. His research project this year is entitled "The Energy Security Initiative and a Nuclear Fuel Cycle Center: Two Enhancement Options for the Current Non-Proliferation Regime."

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Michael May is Professor Emeritus (Research) in the Stanford University School of Engineering and a senior fellow with the Freeman Spogli Institute for International Studies at Stanford University. He is the former co-director of Stanford University's Center for International Security and Cooperation, having served seven years in that capacity through January 2000.

May is a director emeritus of the Lawrence Livermore National Laboratory, where he worked from 1952 to 1988, with some brief periods away from the Laboratory. While there, he held a variety of research and development positions, serving as director of the Laboratory from 1965 to 1971.

May was a technical adviser to the Threshold Test Ban Treaty negotiating team; a member of the U.S. delegation to the Strategic Arms Limitation Talks; and at various times has been a member of the Defense Science Board, the General Advisory Committee to the AEC, the Secretary of Energy Advisory Board, the RAND Corporation Board of Trustees, and the Committee on International Security and Arms Control of the National Academy of Sciences. He is a member of the International Institute on Strategic Studies, and a Fellow of the American Physical Society and the American Association for the Advancement of Science.

May received the Distinguished Public Service and Distinguished Civilian Service Medals from the Department of Defense, and the Ernest Orlando Lawrence Award from the Atomic Energy Commission, as well as other awards.

His current research interests are nuclear weapons policy in the US and in other countries; nuclear terrorism; nuclear and other forms of energy and their impact on the environment, health and safety and security; the use of statistics and mathematical models in the public sphere.

May is continuing work on creating a secure future for civilian nuclear applications. In October 2007, May hosted an international workshop on how the nuclear weapon states can help rebuild the consensus underlying the Nuclear Non-Proliferation Treaty (NPT). Proceedings and a summary report are available online or by email request. May also chaired a technical working group on nuclear forensics. The final report is available online.

In April 2007, May in cooperation with former Secretary of Defense William J. Perry and Professor Ashton Carter of Harvard hosted a workshop on what would have to be done to be ready for a terrorist nuclear detonation. The report is available online at the Preventive Defense Project. A summary, titled, "The Day After: Action Following a Nuclear Blast in a U.S. City," was published fall 2007 in Washington Quarterly and is available online.

Recent work also includes a study of nuclear postures in several countries (2007 - 2009); an article on nuclear disarmament and one on tactical nuclear weapons; and a report with Kate Marvel for the American Academy of Arts and Sciences on possible game changers in the nuclear energy industry.

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