Nuclear Energy
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In this introductory essay, we aim first to demonstrate why the question of which states will develop nuclear power in the future matters for global security. To do so, we briefly discuss the connections between nuclear power, nuclear proliferation, and terrorism risks; we present data contrasting existing nuclear-power states with potential new entrants with respect to factors influencing those risks. Second, we introduce major themes addressed by the authors in both volumes, and explain why the expansion of nuclear power, the future of nuclear weapons disarmament, and the future of the NPT and related parts of the nuclear control regime are so intertwined. Finally, we conclude with some observations about what is new and what is not new about current global nuclear challenges. The American Academy of Arts and Sciences has published three important special issues of Dædalus on nuclear weapons issues in the past-in 1960, 1975, and 1991-and reflecting on the differences between the concerns and solutions discussed in those three issues and the nuclear challenges we face today is both inspiring and sobering.

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Daedalus
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Scott D. Sagan
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Increased nuclear electricity generation in China and India presents uranium suppliers such as Mongolia with an opportunity to develop its uranium and nuclear industries. This paper discusses the Mongolian potential for interaction with China and India, given the strategic, organizational and future developments in each respective nuclear sector. The paper focuses on front-end developments where government-level agreements are likely to dominate the uranium mining and supply negotiations. Established players, such as France and Russia, are poised to secure fuel resources from around the world, but most of the demand for uranium will come from China and India. Therefore, this paper focuses on China's and India's needs and how this is connected to Mongolia's growth in these markets.

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Mongolian Mining Journal
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Undraa Agvaanluvsan
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Russia has the world’s largest stocks of weapon-usable fissile materials. Most of this material is a legacy of the Cold War, when the Soviet Union and the United States each created nuclear industries sized to produce tens of thousands of nuclear weapons. Significant quantities of weapon-grade material also are present on the civilian side of nuclear complex, in storage, or being transferred from one facility to another, or used for research and other purposes. Providing security for all this material will continue to be a major task for Russia for decades.

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International Panel on Fissile Materials, Research Report No. 7
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Pavel Podvig
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Long-term demand for nuclear fuel is high as demonstrated by the continued rise in activities such as uranium mining and milling, enrichment, and fuel fabrication. At a recent international conference in Beijing on nuclear energy, IAEA officials stated that the global financial crisis is unlikely to deter the increasing long-term demand for new nuclear power plants. In order to limit the proliferation risk, the IAEA suggested the concept of multinational nuclear arrangements and member countries followed up with various related proposals. A few projects at the front-end of the nuclear fuel cycle are reviewed in the context of such multinational arrangements. Policies of two uranium-producing countries, Mongolia (a new supplier) and Kazakhstan (a relatively new supplier) are compared. The development at the front end of the nuclear fuel cycle is reviewed in the context of collaboration of supplier countries and countries with strong technological capability and demand such as Russia, France, China, Japan, and India. 

Undraa Agvaanluvsan is a visiting professor at CISAC. Her research covers the technical and policy aspects of the uranium and nuclear energy industry. Mongolia, her homeland, has a large reserve of natural uranium that it wants to develop for economic and strategic purposes. Similar to other developing nations, Mongolia also is considering nuclear power to help reduce domestic pollution and meet growing demand for electricity. In this context, Agvaanluvsan is analyzing Mongolia's uranium mining and processing policies to compare this emerging industry with parallel developments in Kazakhstan and countries in southern Africa. She also is comparing Mongolia's potential role as a uranium supplier to that of Canada's and Australia's.

Agvaanluvsan received her bachelor's (1994) and master's (1995) degrees in physics from the National University of Mongolia. From 1996-97, she studied high energy physics at the International Centre for Theoretical Physics in Trieste, Italy. Agvaanluvsan earned her doctorate in 2002 from North Carolina State University in Raleigh, North Carolina, studying nuclear reactions and quantum chaos in nuclei. Following completion of her doctorate, she conducted postdoctoral research work in the Nuclear Experimental Physics group at Lawrence Livermore National Laboratory.

In addition to Agvannluvsan's scientific and policy analysis work, in 2008 she served as an adviser to Mongolia's Minister of Foreign Affairs. Agvaanluvsan also is director of the recently established Mongolian-American (MonAme) Scientific Research Center in Ulaanbaatar, which focuses on energy, the environment and mineral processing technologies. In September 2008, she helped organize MonAme's first international meeting, the "Ulaanbaatar Conference on Nuclear Physics and Applications," in Mongolia's capital.

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Dr. Undraa Agvaanluvsan currently serves as the president of Mitchell Foundation for Arts and Sciences. She is also an Asia21 fellow of the Asia Society and co-chair of Mongolia chapter of the Women Corporate Directors, a global organization of women serving in public and private corporate boards. 

Dr. Undraa Agvaanluvsan is a former Member of Parliament of Mongolia and the chair of the Parliamentary subcommittee on Sustainable Development Goals. Prior to being elected as a legislator, she served as an Ambassador-at-large in charge of nuclear security issues at the Ministry of Foreign Affairs of Mongolia,  where she worked on nuclear energy and fuel cycle, uranium and rare-earth minerals policy issues. 

She is a nuclear physicist by training, obtained her PhD at North Carolina State University, USA and diploma in High Energy Physics at the International Center for Theoretical Physics, Trieste, Italy. She conducted research at Lawrence Livermore National Laboratory in California, USA and taught energy policy at International Policy Studies Program at Stanford University, where she was a Science fellow and visiting professor at Stanford's Center for International Security and Cooperation. She published more than 90 papers, conference  proceedings, and articles on neutron and proton induced nuclear reactions, nuclear level density and radiative strength function, quantum chaos and the Random Matrix Theory, including its application in electric grid network. 

Undraa Agvaanluvsan CISAC Visiting Professor Speaker
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The purpose of this presentation is to indicate possible ways in which nuclear power plant (NPP) projects and possibly related nuclear fuel cycle facilities (should there be any) could be subverted to hide and clandestinely support nuclear weapons development programs. The discussion here is generic in nature; however, special applicability to the newly emerging nuclear programs in the Middle East is noted. The speaker's purpose is not to provide a ‘cookbook' for would-be proliferators on how to utilize NPP projects to support clandestine weapons development programs, but rather to provide indication to the nonproliferation-minded as to what to look for and guard against when a number of new NPP projects are initiated within a short time frame in a region with limited past nuclear experience as a direct response to the Iranian quest for ‘nuclear power'. This is not to imply that there are nefarious intents behind the sudden desire to acquire nuclear power capabilities by several countries that are mostly well endowed with oil and natural gas resources. My intent here is rather to provide a general assessment on how such NPP projects might be utilized, should their national owners decide to do so in situations of "supreme national interest', as a guise for clandestine nuclear weapons programs.

Chaim Braun is a CISAC consulting professor specializing in issues related to nuclear power economics and fuel supply, and nuclear nonproliferation. At CISAC, Braun pioneered the concept of proliferation rings dealing with the implications of the A.Q. Khan nuclear technology smuggling ring, the concept of the Energy Security Initiative (ESI), and the re-evaluation of nuclear fuel supply assurance measures, including nuclear fuel lease and take-back.

Braun, currently, is working on an analysis of new nuclear power plant prospects in the Middle East, and the potential for nuclear proliferation from prospective nuclear plants in industrializing countries. He also works on extensions of nuclear fuel supply assurance concepts to regional fuel enrichment plants operated on a ‘black box' mode, particularly as applied to the South Asian, Central Asian and South American regions.

Previously, Braun worked at CISAC on a study of safeguarding the Agreed Framework in North Korea, 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, chaired a working group on the back-end of the nuclear fuel cycle, as a part of a CISAC summer study on Nuclear Power Expansion and Nonproliferation Implications.

Braun is a member of the World Nuclear Association (WNA) committees on Nuclear Economics and Assured Fuel Supplies. He is a permanent lecturer at the World Nuclear University's (WNU) One-Week Courses. Braun was 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 (EIA), the Electric Power Research Institute (EPRI), the Nuclear Energy Institute (NEI), the Non-Proliferation Trust International, and other organizations.

Before joining CISAC, Braun 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. He also managed nuclear marketing in East Asia and Eastern Europe. Prior to that, Braun worked at United Engineers and Constructors (UE&C), EPRI and Brookhaven National Laboratory (BNL).

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Chaim Braun CISAC Consulting Professor Speaker
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Management Science and Engineering Professor Siegfried S. Hecker, an expert on nuclear weapons, recently returned from a visit to North Korea, where he frequently checks on the country's denuclearization process. Hecker has researched extensively in fields of plutonium science-he served as director of Los Alamos National Laboratory from 1986 through 1997, and remains an emeritus director to the Laboratory. Through a series of Track Two, non-governmental, non-official visits to North Korea, Hecker has worked closely with the previous and current administration's North Korean negotiations team. The Daily spoke with Hecker about his experiences in the country, and his insight into nuclear issues in North Korea and elsewhere.

The Stanford Daily (SD): This is your sixth visit to North Korea. You made one each year from 2004 to 2009. How is this trip different from the previous ones? Any change in North Korean society, diplomacy?

Siegfried Hecker (SH): We visited North Korea from Tuesday, Feb. 24 to Saturday, Feb. 28, and first of all it was quite a relief from Beijing in that the air was quite clear and that the weather was beautiful. In Beijing, it went day to day from being smoggy to being almost impossibly smoggy. So the first thing that we found when we got off at Pyongyang, was the relief of having reasonably clean air.

Even though it was in February and still quite cold, the greatest impression left is that Pyongyang and the people just looked more prosperous this time than I have seen them look in the past. There were more cars on the road; there were more tractors, especially when we got off into the countryside. The people were better dressed.

Particularly, one of the things I look for is color. Years ago, North Korea, like the Soviet Union, was all drab, gray and black. Now you see lots of colors; lots of down jackets, for example, on little children and women with bright colors from yellow to green to red. There was more construction in Pyongyang. We've seen many cranes working on the ground.

All the way around, while some people believed that North Korea and its economy is sinking, we've actually seen it rising and looking better than we've seen in the past. I would say this is the starkest observation of how it struck differently as the previous times.

[Diplomatically,] we've seen a change of attitude since October 2006, when they conducted a nuclear test. Even though, by technical standards, that nuclear test was of limited success, politically for them it was very successful. So the principal attitude change is one of greater confidence on their part. They now tell us, you must deal with us as a nuclear weapon state. We have demonstrated that we have nuclear weapons. We've tested a nuclear weapon, and so we expect to be treated as a state that has nuclear weapons. That confidence will most likely harden their negotiating position. Then, of course, they're also still trying to get a sense of what the new administration will do. They are entering the negotiations with a new administration from what they considered to be a position of strength.

SD: How is North Korea's disablement process of its nuclear facilities going?

SH: In July 2007, they stopped operations and began disabling the nuclear facilities. When I was there almost exactly one year ago, they showed me the nuclear facilities, allowed me to take photographs of the nuclear facilities to demonstrate that they are disabling those facilities that produce the bomb fuel-the plutonium. Disabling the facilities means making it more difficult to restart. They have finished most of the disablement actions, but still need to complete the unloading of the fuel from the nuclear reactor.

They made the decision last year to slow down the unloading because the other parties did not meet their obligations of providing heavy fuel oil or equivalent energy aid. At this point, Japan and South Korea have not finished their obligations, so the slow-down continues.

If the other parties complete their obligations, then I believe North Korea is prepared to complete the disablement. However, the next important step is to dismantle the facilities-that is, take them apart. The terms of that dismantlement have not yet been negotiated. Subsequently, they will need to give up their nuclear weapons. That seems a long way off now based on their comments.

SD: In one of your reports, you discussed the idea of a scientific fingerprint that could deter North Korea from exporting its plutonium. This is very interesting. Can the method have wider use?

SH: One of the concerns with North Korea would be the possibility of them selling or exporting plutonium or nuclear technologies. We know enough about the North Korean plutonium that we have what you call a scientific fingerprint. The makeup of plutonium is determined by the type of reactor and by how long it was in the reactor. We know that about the North Korean plutonium so we can identify North Korea's plutonium. This should be a deterrent for North Korea ever exporting its plutonium because we would know it came from North Korea.

We, of course, don't know whether or not North Korea would ever want to sell its plutonium, but just in case, the fingerprint represents a deterrent. This fingerprinting of plutonium is not as useful for plutonium from the rest of the world, because there are so many different types of reactors and we know less about their fuels and operating schedules.

SD: Do you think the example of North Korea contributes much to a solution of nuclear problems in other regions-for example, Iran?

SH: Right now, the second nuclear hot spot is Iran, and the difference between North Korea and Iran is that North Korea has declared its nuclear program now to be a weapon's program and has demonstrated that at least it can detonate a nuclear device, even though it wasn't fully successful. Iran, I believe, is developing an option for nuclear weapons but under the umbrella of doing it strictly for civilian purposes. They say, "We're not a nuclear weapon state and we have no intention of developing nuclear weapons," but they are continuing to put most of the capabilities in place should they decide to build weapons.

The dividing line between military and civilian is a very fine line, so North Korea and Iran are two very different problems. However, those countries certainly watch each other and look at the diplomatic responses during each other's negotiations.

SD: Are you advising anyone in the new administration?

SH: We work very closely with the U.S. government on this, although our visits are strictly track two visits, which means non-governmental, non-official visits. I don't go as an official, but rather as a Stanford University employee. In the past, we worked very closely with the previous North Korean negotiations team led by Ambassador Christopher Hill. We have now begun to work with the new team that is just being put in place.

SD: During your visits, you met with North Korean officials in education, public health, and explored possibilities of cooperation in these areas. How do you envision these future exchanges?

SH: We met with officials from the ministry of education and one of the economic universities to discuss potential cooperation in educational and technology exchange. In the past, we have also met with officials from the health ministry. So, in addition to working the nuclear issues, we're very interested in trying to engage the North Korean community in a broader set of activities than simply nuclear, and technology is one of those. They're very interested in material science, biotechnology, information technology, and so we explored the possibility of exchange visits and particularly having some Stanford professors go to North Korea and lecture on those topics.

SD: What classes do you currently teach at Stanford? How do you like being a professor at Stanford?

SH: I have a terrific time-that's one of the reasons why I'm at Stanford. The two classes that I teach are both Management Science and Engineering classes. They both focus on the intersection of technology and policy. One is a very large class, MSE 193/293, that Professor William Perry, former Secretary of Defense, and I teach together. We cover everything from history of technology and warfare to modern times and what the current challenges are in the security arena. Both Prof. Perry and I try to teach that in the spirit of our own experiences in these areas. It's a very, very large class-over 200 students.

Then I teach a course by myself in spring that's exactly the opposite. It's a sophomore seminar, MSE93Q, and I have approximately 16 students. The title is "Nuclear Weapons, Nuclear Energy, Nuclear Terrorism," and in essence, it's everything nuclear. So I cover in that 10 weeks the whole nuclear problem. I try to get students to understand the basics of nuclear technology and how that interfaces with the policy issue of nuclear weapons, energy, proliferation and terrorism. We cover topics such as: If you develop nuclear energy, why do you have to be concerned about nuclear terrorism and nuclear proliferation? What is the connection between nuclear energy and nuclear weapons? That's what we cover in 10 weeks' time, and I've enjoyed the interaction with students immensely.

SD: What do you aim to teach students in the classroom and outside?

SH: Particularly, I want students to understand the intersections of technology and policy. The nuclear field is a very good one to do that because you must understand the basics of nuclear technology to make good policy. And we also now have 60 years of very rich history of the interplay of those two in so many different countries and so many different ways. For example, in both of my classes the students have to write policy papers that show they have at least a basic understanding of the technology, even though they may be social science, political science, international relations majors, but I want them to understand the difference between plutonium and uranium, between fission and fusion, between weapons and energy. That's what I like to be able to contribute to the University.

What I like about the students is how truly interested and dedicated they are and how experienced so many of them are in the international arena. In addition, what's also fascinating is that we have students from all over the world. Whether it is a physics major from Palestine, or somebody who grew up in Iran, Pakistan, India or in China, Vietnam, Africa, they bring a totally different outlook on the world to the table, which then of course helps the rest of the students to understand that this world is much more than just about the United States of America, and Stanford is a great place to do it.

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The entry of Mongolia to the league of democracy took place less than two decades ago. Therefore coverage of the democratic chapter of Mongolia in the history books is very thin compared to that of the Great Mongolian Empire. However, the free society and economic freedom brought about the prospects and openness that embody the present economic and cultural globalization. Mongolia is an exotic destination that appeals to western investors for its highly educated population and its proximity to the world’s largest growing economies. The geographic location of Mongolia – landlocked, sandwiched between two giants, Russia and China – was once a drawback for business investment. As the world changes and the economic growth center (and thus the demand) shifts eastward to Asia, what was once a drawback is now an advantage. Of special importance is being next door to China’s enormously large and growing market.

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