Nuclear Issues

16 Items

Dr. Henry Kissinger, foreground, at a White House strategy session. Pictured from the left are: Secretary of State William P. Rogers. U.S. President Richard Nixon, and Defense Secretary Melvin R. Laird.

AP/Bob Daugherty

Journal Article - H-Diplo | Robert Jervis International Security Studies Forum

Miller on Trachtenberg and Jervis on SALT

| Sep. 27, 2023

At a moment when arms control is deeply troubled and may be dying, two eminent scholars, Marc Trachtenberg and the late Robert Jervis, have taken a fresh look at the beginnings of strategic arms control fifty years after the signing in Moscow of the SALT I agreements in May of 1972. They do so from different vantage points, writes Steven E. Miller.

Signing of the SALT treaty between the U.S. and the U.S.S.R. is observed by officials as U.S. President Richard Nixon, left and Soviet leader Leonid Brezhnev, right, sign document in Moscow, May 26, 1972. (AP Photo)

AP Photo

Journal Article - Quarterly Journal: International Security

Arms Control as Wedge Strategy: How Arms Limitation Deals Divide Alliances

| Fall 2021

Wedge strategy theory explains how states use strategic arms control to divide adversaries by affecting their trust, threat perceptions, and beliefs about a commitment’s trade-offs. Examining three landmark arms control negotiations shows how the wedge motive was a key component to these negotiations.

The main hall for the IAEA’s Talks on Supplying Nuclear Fuel for Iranian Research Reactor, Vienna, Austria, 19 October 2009. 

Dean Calma/IAEA

Paper

The Deal That Got Away: The 2009 Nuclear Fuel Swap with Iran

| January 2021

With concerns and uncertainties regarding Iran’s nuclear future persisting to this day, this paper seeks to review the TRR negotiations and the context in which they unfolded in order to capture some of the lessons of negotiating with Iran regarding its nuclear program, primarily from the viewpoint of senior U.S. officials involved at the time. The paper is also informed by the personal perspective of one of the authors (Poneman) who led the U.S. delegation in the 2009 Vienna talks, and who, prior to this publication, had not publicly elaborated on his experience. The other author (Nowrouzzadeh), who supported the TRR talks in an analytical capacity within the U.S. Department of Defense, also conducted an extensive interview with Poneman as part of their collaboration on this paper. By drawing on existing literature and recent interviews with several senior U.S. officials involved in the negotiations now that over ten years have passed, the authors seek to draw useful lessons from this episode that can assist policymakers in understanding Iran’s nuclear decision-making and in their continued efforts to shape the future trajectory of Iran’s nuclear program.

A U.S. Customs and Border Protection officer uses a handheld GR135- Radiation Isttope Identifier to check a container that was stopped after passing through a radiation detection device at the port of Newark in February 2006 (AP Photo/Mel Evans).

AP Photo/Mel Evans

Journal Article - Nonproliferation Review

Combating Nuclear Smuggling? Exploring Drivers and Challenges to Detecting Nuclear and Radiological Materials at Maritime Facilities

| June 03, 2019

International concern over nuclear terrorism has grown during the past few decades. This has driven a broad spectrum of efforts to strengthen nuclear security globally, including the widespread adoption of radiation-detection technology for border monitoring. Detection systems are now deployed at strategic locations for the purported purpose of detecting and deterring the smuggling of nuclear and radioactive materials. However, despite considerable investment in this area, few studies have examined how these programs are implemented or the operational challenges they face on a day-to-day basis. This article seeks to address this with a focus on radiation-detection efforts at maritime facilities. Utilizing practitioner interviews and a survey, this article identifies the factors that influence the planning and use of these systems in this fast-moving environment. The results clearly demonstrate that the implementation of these systems varies significantly across different national and organizational contexts, resulting in a fragmented global nuclear-detection architecture, which arguably undermines efforts to detect trafficked nuclear-threat materials. Greater consideration should therefore be given to developing international standards and guidance, designing and adopting tools to support key parts of the alarm assessment process, and broader sharing of good practice.

Blog Post - Nuclear Security Matters

Bunn, Tobey, and Roth on Nuclear Smuggling

May 20, 2015

Matthew Bunn, William Tobey, and I have a new op-ed in The Hill’s Congress Blog, “Don’t weaken our defenses against nuclear smuggling.” We wrote it in response to proposed legislation that would prohibit funding for fixed radiation detectors to catch nuclear smugglers – both for installing new ones and even for maintaining the ones U.S. taxpayers have already paid billions to install.

Report - Managing the Atom Project, Belfer Center

Advancing Nuclear Security: Evaluating Progress and Setting New Goals

In the lead-up to the nuclear security summit, Advancing Nuclear Security: Evaluating Progress and Setting New Goals outlines what was accomplished in a four-year effort launched in 2009 to secure nuclear material around the globe—and what remains to be done. The effort made significant progress, but some weapons-usable nuclear materials still remain “dangerously vulnerable." The authors highlight the continuing danger of nuclear and radiological terrorism and call for urgent action.

Blog Post - Nuclear Security Matters

Reducing the Risk of “Dirty Bombs”

Mar. 10, 2014

In the spectrum of threats to nuclear security, highly radioactive materials such as cesium-137 and cobalt-60 represent a set of concerns and challenges which is much different from that of fissile materials like highly enriched uranium. Unlike the latter, they cannot be used to build a nuclear weapon. However, terrorists could use such sources to construct a so-called “dirty bomb”, an improvised explosive device which spreads the radioactive substances in a populated area. Although, according to most planning scenarios, such a “dirty bomb” would likely cause few radiation-related casualties, its economic effects could still be in the billions of dollars – especially if parts of a city needed to be shut down for weeks or months while they are being decontaminated.