Physical Public Templates for Nuclear Warhead Verification

IF 0.7 Q3 INTERNATIONAL RELATIONS Science & Global Security Pub Date : 2020-01-02 DOI:10.1080/08929882.2020.1728885
A. Glaser, B. Barak, M. Kütt, Sébastien Philippe
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引用次数: 2

Abstract

Abstract Passive gamma spectroscopy has been successfully used for nuclear warhead inspection systems based on the template-matching approach. The most prominent example of such a system is Sandia’s Trusted Radiation Identification System (TRIS), which is based on an earlier system used at Pantex since 1994 to confirm the identities of containerized plutonium pits. Remarkably, TRIS uses only 16 energy bins, i.e., 16 numbers, to accomplish this task. Additional experiments have shown that such a template-matching method could be performed in a way that does not reveal classified information. To be used in a real inspection setting, however, inspectors must gain confidence that the system hardware and software work as designed and display genuine measurements through a process known as authentication. It also requires establishing and maintaining confidence in the template, i.e., that the data characterizing the treaty accountable item is genuine and has not been altered. In the case of TRIS, the template data are stored electronically and signed as a whole, such that no information about the template can ever be shared with inspectors as a confidence-building measure. Here, we propose an inspection protocol that uses a different approach: Information is stored in the form of punched cards that encode the secret template. Public masks can be used to reveal selected features of the template, e.g., total counts in particular energy bins, while keeping others secret, constraining certain physical properties of the treaty accountable item and providing increasing levels of transparency. We illustrate our approach using Princeton’s Information Barrier Experimental II based on a vintage 6502 processor.
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核弹头核查的实物公共模板
基于模板匹配方法的被动伽马能谱已成功应用于核弹头检测系统。这种系统最突出的例子是桑迪亚的可信辐射识别系统(TRIS),该系统基于Pantex自1994年以来用于确认容器化钚坑身份的较早系统。值得注意的是,TRIS只使用了16个能量箱,即16个数字来完成这项任务。另外的实验表明,这种模板匹配方法可以在不泄露机密信息的情况下执行。然而,要在实际的检查设置中使用,检查人员必须获得对系统硬件和软件按设计工作的信心,并通过称为认证的过程显示真实的测量结果。它还需要建立和保持对模板的信任,即,表征条约问责项目的数据是真实的,没有被改变。在TRIS的情况下,模板数据以电子方式储存并作为一个整体签署,因此,作为建立信任措施,任何关于模板的信息都不能与视察员分享。在这里,我们提出一种使用不同方法的检查协议:信息以穿孔卡的形式存储,穿孔卡对秘密模板进行编码。公共掩码可用于显示模板的选定特征,例如,特定能源箱的总数,同时对其他特征保密,限制条约问责项目的某些物理属性,并提供越来越高的透明度。我们使用普林斯顿大学基于老式6502处理器的信息屏障实验II来说明我们的方法。
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来源期刊
Science & Global Security
Science & Global Security INTERNATIONAL RELATIONS-
CiteScore
1.00
自引率
14.30%
发文量
8
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