Nuclear Risk
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In the wake of the 1963 Partial Test Ban Treaty, the United States launched a series of satellites under the name Vela (after a constellation in the southern hemisphere sometimes called “the sails” because of its configuration). The Vela satellites were designed to monitor compliance with the treaty by detecting clandestine nuclear tests either in space or in the atmosphere. The first such satellite was launched in 1963, the last in 1969. They operated by measuring X-rays, neutrons and gamma rays, and, in the case of the more advanced units, emissions of light using two photodiode sensors called bhangmeters (derived from the Indian word for cannabis). These satellites had a nominal life of seven years, after which the burden of detection was to be shifted to a new series of satellites under the Defense Support Program (DSP), equipped with infra-red detectors designed to pick up missile launches as well as nuclear tests. The Vela satellites, however, kept operating long past the end of their nominal design life and one of them, designated Vela 6911, detected an event on September 22, 1979, that has become a subject of intense interest ever since.

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Middle East Policy Journal
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Leonard Weiss
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The American Academy of Arts and Sciences has published a paper with seven essays from leading scholars invited to respond to Scott Sagan's concluding essay in the Fall 2009 special issue of Daedalus on the global nuclear future. The paper includes Scott's original essay and responses by James M. Acton, Jayantha Dhanapala, Mustafa Kibaroglu, Harald Muller, Yukio Satoh, Mohamed I. Shaker and Achilles Zaluar.

As Leslie Berlowitz, CEO of the American Academy of Arts and Sciences, states in an excerpt from the paper's introduction:

"Renewed interest in arms control and restated commitments to the longterm goal of nuclear disarmament have clearly increased over recent years, most dramatically with President Barack Obama's April 2009 speech in Prague. With that change in focus comes an opportunity for the international community to rethink how Article VI of the NPT is traditionally interpreted and to move beyond the cycle of repeated complaints from the "have-nots" that the "haves" are not doing enough to disarm themselves and repeated retorts by the "haves" that they are already taking every step that is realistic or prudent. The promise of a different approach to the commitments made under the NPT forms the basis of the Scott Sagan's valuable article--"Shared Responsibilities for Nuclear Disarmament"...

"The differences in national perspectives and the differences in individual opinions about appropriate disarmament steps among the authors should not mask a commitment they all share. The contributors to this volume agree that new thinking and continued debate about how best to maintain momentum toward nuclear disarmament is to be welcomed. Only by seeking out, and taking into consideration, a cross section of views can progress toward the goal of a nuclear-weapons-free world continue...

"Their contributions serve to expand the discussion that was started by the original Daedalus article--and together they are intended to spark renewed policy debates about how best to pursue global disarmament, debates that will be prominent at the May 2010 NPT Review Conference in New York City and in the years following that important meeting."

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Scott D. Sagan

CISAC's Siegfried Hecker presented the findings of his recent trip to North Korea, where he was given a tour of a nuclear facility reportedly capable of enriching uranium. In his remarks he described two new nuclear facilities, a small light-water power reactor in early stages of construction, and a "modern, clean centrifuge plant" for uranium enrichment. Following his presentation he and Robert Carlin, a CISAC visiting professor, spoke about North Korean nuclear programs and the international reaction to North Korea's nuclear ambitions. This event occurred the day after North Korean military attacks on the South Korean island of Yeonpyeong.


Dr. Hecker's Nov. 23, 2010 Presentation at the Korea Economic Institute (C-Span video)




Korea Economic Institute

CISAC
Stanford University
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Senior Fellow, Freeman Spogli Institute for International Studies, Emeritus
Research Professor, Management Science and Engineering, Emeritus
hecker2.jpg PhD

Siegfried S. Hecker is a professor emeritus (research) in the Department of Management Science and Engineering and a senior fellow emeritus at the Freeman Spogli Institute for International Studies (FSI). He was co-director of CISAC from 2007-2012. From 1986 to 1997, Dr. Hecker served as the fifth Director of the Los Alamos National Laboratory. Dr. Hecker is an internationally recognized expert in plutonium science, global threat reduction, and nuclear security.

Dr. Hecker’s current research interests include nuclear nonproliferation and arms control, nuclear weapons policy, nuclear security, the safe and secure expansion of nuclear energy, and plutonium science. At the end of the Cold War, he has fostered cooperation with the Russian nuclear laboratories to secure and safeguard the vast stockpile of ex-Soviet fissile materials. In June 2016, the Los Alamos Historical Society published two volumes edited by Dr. Hecker. The works, titled Doomed to Cooperate, document the history of Russian-U.S. laboratory-to-laboratory cooperation since 1992.

Dr. Hecker’s research projects at CISAC focus on cooperation with young and senior nuclear professionals in Russia and China to reduce the risks of nuclear proliferation and nuclear terrorism worldwide, to avoid a return to a nuclear arms race, and to promote the safe and secure global expansion of nuclear power. He also continues to assess the technical and political challenges of nuclear North Korea and the nuclear aspirations of Iran.

Dr. Hecker joined Los Alamos National Laboratory as graduate research assistant and postdoctoral fellow before returning as technical staff member following a tenure at General Motors Research. He led the laboratory's Materials Science and Technology Division and Center for Materials Science before serving as laboratory director from 1986 through 1997, and senior fellow until July 2005.

Among his professional distinctions, Dr. Hecker is a member of the National Academy of Engineering; foreign member of the Russian Academy of Sciences; fellow of the TMS, or Minerals, Metallurgy and Materials Society; fellow of the American Society for Metals; fellow of the American Physical Society, honorary member of the American Ceramics Society; and fellow of the American Academy of Arts and Sciences.

His achievements have been recognized with the Presidential Enrico Fermi Award, the 2020 Building Bridges Award from the Pacific Century Institute, the 2018 National Engineering Award from the American Association of Engineering Societies, the 2017 American Nuclear Society Eisenhower Medal, the American Physical Society’s Leo Szilard Prize, the American Nuclear Society's Seaborg Medal, the Department of Energy's E.O. Lawrence Award, the Los Alamos National Laboratory Medal, among other awards including the Alumni Association Gold Medal and the Undergraduate Distinguished Alumni Award from Case Western Reserve University, where he earned his bachelor's, master's, and doctoral degrees in metallurgy.

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Siegfried S. Hecker Speaker

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Carlin_Robert.jpg MA

Bob Carlin is a Visiting Scholar at CISAC. From both in and out of government, he has been following North Korea since 1974 and has made 25 trips there. He recently co-authored a lengthy paper to be published by the London International Institute of Strategic Studies, entitled "Politics, Economics and Security: Implications of North Korean Reform."

Carlin served as senior policy advisor at the Korean Peninsula Energy Development Organization (KEDO) from 2002-2006, leading numerous delegations to the North for talks and observing developments in-country during the long trips that entailed.

From 1989-2002, he was chief of the Northeast Asia Division in the Bureau of Intelligence and Research, U.S. Department of State. During much of that period, he also served as Senior Policy Advisor to the Special Ambassador for talks with North Korea, and took part in all phases of US-DPRK negotiations from 1992-2000. From 1971-1989, Carlin was an analyst at the Central Intelligence Agency, where he received the Exceptional Analyst Award from the Director of Central Intelligence.

Carlin received his AM in East Asian regional studies from Harvard University in 1971 and his BA in political science from Claremont Men's College.

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Robert Carlin Speaker
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Excerpt: "On November 12, during my most recent visit to the Yongbyon Nuclear Complex with Stanford University colleagues John W. Lewis and Robert Carlin, we were shown a 25 to 30 megawatt-electric (MWe) experimental light-water reactor (LWR) in the early stages of construction. It is North Korea's first attempt at LWR technology and we were told it is proceeding with strictly indigenous resources and talent. The target date for operation was said to be 2012, which appears much too optimistic."

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Siegfried S. Hecker
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Gerald Warburg earned his BA in Political Science and Education at Hampshire College and MA in Political Science at Stanford in 1979, where he worked closely with CISAC fellows. He is now Executive Vice President of Cassidy & Associates, a prominent public affairs firm in Washington DC, and has served as a visiting professor at Georgetown University, Penn, Stanford, and Hampshire. He has also recently been appointed Professor of Practice of Public Policy at the University of Virginia’s Frank Batten School of Leadership and Public Policy. Warburg has more than a decade of experience as a senior aide to members of both the U.S. House and Senate leadership. As Legislative Assistant to U.S. Senate Democratic Whip Alan Cranston on Trade, Defense, and Foreign Policy, he coordinated the Senator’s work on the Committees on Foreign Relations, Intelligence, and the International Finance and Monetary Policy Subcommittee of the Banking Committee. Previously, Mr. Warburg served as Legislative Assistant for Energy, Environment and Trade issues to U.S. Representative Jonathan B. Bingham, Chairman of the International Economic Policy and Trade Subcommittee of the House Foreign Affairs Committee. Mr. Warburg was also an aide to U.S. Senator John Tunney on the Joint Committee on Atomic Energy. He is the author of Conflict and Consensus: The Struggle Between Congress and the President Over Foreign Policymaking (Harper & Row, 1989), and a novel (about Stanford China scholars) entitled The Mandarin Club, (Bancroft Press, 2006).

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Gerry Warburg Executive Vice President Speaker Cassidy & Associates
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Reuben W. Hills Conference Room

CISAC
Stanford University
Encina Hall, C220
Stanford, CA 94305-6165

(650) 725-6468 (650) 723-0089
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Senior Fellow, Freeman Spogli Institute for International Studies, Emeritus
Research Professor, Management Science and Engineering, Emeritus
hecker2.jpg PhD

Siegfried S. Hecker is a professor emeritus (research) in the Department of Management Science and Engineering and a senior fellow emeritus at the Freeman Spogli Institute for International Studies (FSI). He was co-director of CISAC from 2007-2012. From 1986 to 1997, Dr. Hecker served as the fifth Director of the Los Alamos National Laboratory. Dr. Hecker is an internationally recognized expert in plutonium science, global threat reduction, and nuclear security.

Dr. Hecker’s current research interests include nuclear nonproliferation and arms control, nuclear weapons policy, nuclear security, the safe and secure expansion of nuclear energy, and plutonium science. At the end of the Cold War, he has fostered cooperation with the Russian nuclear laboratories to secure and safeguard the vast stockpile of ex-Soviet fissile materials. In June 2016, the Los Alamos Historical Society published two volumes edited by Dr. Hecker. The works, titled Doomed to Cooperate, document the history of Russian-U.S. laboratory-to-laboratory cooperation since 1992.

Dr. Hecker’s research projects at CISAC focus on cooperation with young and senior nuclear professionals in Russia and China to reduce the risks of nuclear proliferation and nuclear terrorism worldwide, to avoid a return to a nuclear arms race, and to promote the safe and secure global expansion of nuclear power. He also continues to assess the technical and political challenges of nuclear North Korea and the nuclear aspirations of Iran.

Dr. Hecker joined Los Alamos National Laboratory as graduate research assistant and postdoctoral fellow before returning as technical staff member following a tenure at General Motors Research. He led the laboratory's Materials Science and Technology Division and Center for Materials Science before serving as laboratory director from 1986 through 1997, and senior fellow until July 2005.

Among his professional distinctions, Dr. Hecker is a member of the National Academy of Engineering; foreign member of the Russian Academy of Sciences; fellow of the TMS, or Minerals, Metallurgy and Materials Society; fellow of the American Society for Metals; fellow of the American Physical Society, honorary member of the American Ceramics Society; and fellow of the American Academy of Arts and Sciences.

His achievements have been recognized with the Presidential Enrico Fermi Award, the 2020 Building Bridges Award from the Pacific Century Institute, the 2018 National Engineering Award from the American Association of Engineering Societies, the 2017 American Nuclear Society Eisenhower Medal, the American Physical Society’s Leo Szilard Prize, the American Nuclear Society's Seaborg Medal, the Department of Energy's E.O. Lawrence Award, the Los Alamos National Laboratory Medal, among other awards including the Alumni Association Gold Medal and the Undergraduate Distinguished Alumni Award from Case Western Reserve University, where he earned his bachelor's, master's, and doctoral degrees in metallurgy.

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Siegfried S. Hecker Co-director, Center for International Security and Cooperation, Professor (Research), Department of Management Science and Engineering Speaker
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Stanford University
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1946-2024
Senior Fellow at the Freeman Spogli Institute for International Studies
Frank Stanton Professor in Nuclear Security
Professor of Geological Sciences
rodewingheadshot2014.jpg MS, PhD

      Rod Ewing was the Frank Stanton Professor in Nuclear Security and Co-Director of the Center for International Security and Cooperation in the Freeman Spogli Institute for International Studies and a Professor in the Department of Geological Sciences in the School of Earth, Energy and Environmental Sciences at Stanford University. He was also the Edward H. Kraus Distinguished University Professor Emeritus at the University of Michigan, where he had faculty appointments in the Departments of Earth & Environmental Sciences, Nuclear Engineering & Radiological Sciences and Materials Science & Engineering.  He was a Regents' Professor Emeritus at the University of New Mexico, where he was a member of the faculty from 1974 to 1997. Ewing received a B.S. degree in geology from Texas Christian University (1968, summa cum laude) and M.S. (l972) and Ph.D. (l974, with distinction) degrees from Stanford University where he held an NSF Fellowship.    His graduate studies focused on an esoteric group of minerals, metamict Nb-Ta-Ti oxides, which are unusual because they have become amorphous due to radiation damage caused by the presence of radioactive elements. Over the past thirty years, the early study of these unusual minerals has blossomed into a broadly-based research program on radiation effects in complex ceramic materials.  In 2001, the work on radiation-resistant ceramics was recognized by the DOE, Office of Science – Decades of Discovery as one of the top 101 innovations during the previous 25 years. This has led to the development of techniques to predict the long-term behavior of materials, such as those used in radioactive waste disposal.

      He was the author or co-author of over 750 research publications and the editor or co-editor of 18 monographs, proceedings volumes or special issues of journals. He had published widely in mineralogy, geochemistry, materials science, nuclear materials, physics and chemistry in over 100 different ISI journals. He was granted a patent for the development of a highly durable material for the immobilization of excess weapons plutonium.  He was a Founding Editor of the magazine, Elements, which is now supported by 17 earth science societies. He was a Principal Editor for Nano LIFE, an interdisciplinary journal focused on collaboration between physical and medical scientists. In 2014, he was named a Founding Executive Editor of Geochemical Perspective Letters and appointed to the Editorial Advisory Board of Applied Physics Reviews.

      Ewing had received the Hawley Medal of the Mineralogical Association of Canada in 1997 and 2002, a Guggenheim Fellowship in 2002, the Dana Medal of the Mineralogical Society of America in 2006, the Lomonosov Gold Medal of the Russian Academy of Sciences in 2006, a Honorary Doctorate from the Université Pierre et Marie Curie in 2007, the Roebling Medal of the Mineralogical Society of America in 2015, Ian Campbell Medal of the American Geoscience Institute, 2015, the Medal of Excellence in Mineralogical Sciences from the International Mineralogical Association in 2015, the Distinguished Public Service Medal of the Mineralogical Society of America in 2019, and was a foreign Fellow of the Royal Society of Canada. He was also a fellow of the Geological Society of America, Mineralogical Society of America, Mineralogical Society of Great Britain and Ireland, American Geophysical Union, Geochemical Society, American Ceramic Society, the American Association for the Advancement of Science and the Materials Research Society. He was elected a Fellow of the National Academy of Engineering in 2017.

      He was president of the Mineralogical Society of America (2002) and the International Union of Materials Research Societies (1997-1998). He was the President of the American Geoscience Institute (2018). Ewing had served on the Board of Directors of the Geochemical Society, the Board of Governors of the Gemological Institute of America and the Science and Security Board of the Bulletin of the Atomic Scientists.

      He was co-editor of and a contributing author of Radioactive Waste Forms for the Future (North-Holland Physics, Amsterdam, 1988) and Uncertainty Underground – Yucca Mountain and the Nation’s High-Level Nuclear Waste (MIT Press, 2006).  Professor Ewing had served on thirteen National Research Council committees and board for the National Academy of Sciences, Engineering and Medicine that have reviewed issues related to nuclear waste and nuclear weapons. In 2012, he was appointed by President Obama to serve as the Chair of the Nuclear Waste Technical Review Board, which is responsible for ongoing and integrated technical review of DOE activities related to transporting, packaging, storing and disposing of spent nuclear fuel and high-level radioactive waste; he stepped down from the Board in 2017.

https://profiles.stanford.edu/rodney-ewing

Co-director of the Center for International Security and Cooperation
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First paragraph of the book chapter:

How quickly could individual governments, starting from different levels of nuclear-related expertise and technology, develop a nuclear weapon if they chose to do so? This question—which I will call the “nuclear latency” question—is both exceedingly important and poorly understood. It is important because an accurate understanding of both underlying state capabilities and the time needed to utilize such capabilities is necessary to analyze a wide set of nuclear policy issues: for example, dealing with the Iran nuclear crisis (how quickly could Tehran make a weapon from its stockpile of low–enriched uranium?); understanding the relationship between the spread of civilian nuclear power and the spread of nuclear weapons capability (will new civilian programs make breakout to military programs easier and more likely?); evaluating potential NPT reforms (what would be the effects of lengthening the ninety-day notice in the Article X withdrawal clause?); or assessing the stability of a world without nuclear weapons (could disarmed states rearm in five days, five weeks, five months, or five years?). Despite widespread discussion of these policy issues, however, a set of mirror-image analytic failures has limited our ability to make clear predictions about nuclear latency and proliferation: Political scientists working on these subjects have often failed to examine basic technical factors regarding the nuclear fuel cycle that strongly influence how quickly states can get the bomb; the more technical literature about nuclear latency has similarly often failed to examine the political factors that strongly influence the ability of a government to develop nuclear weapons.

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Scott D. Sagan
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