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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Superconducting Transition-Edge Sensor Microcalorimeters for Ultra-High Resolution Alpha-Particle Spectrometry
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Superconducting Transition-Edge Sensor Microcalorimeters for Ultra-High Resolution Alpha-Particle Spectrometry

机译:用于超高分辨率阿尔法粒子光谱分析的超导过渡边缘传感器量热仪

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摘要

Alpha-particle spectrometry is a powerful analytical tool for nuclear forensics and environmental monitoring. Superconducting transition-edge sensor microcalorimeters have been shown to yield unsurpassed energy resolution for alpha spectrometry. With nearly an order of magnitude better energy resolution (1.06 keV FWHM at 5.3 MeV) than the current state-of-the-art silicon detectors (8–10 keV at 5.3 MeV), it is possible to measure samples containing multiple radioisotopes that would require expensive and time-consuming radiochemical separation prior to measurement with a silicon detector. This paper presents recent results from the Los Alamos four-channel microcalorimeter alpha spectrometer. We have prepared a source from weapons-grade plutonium and demonstrated the ability of microcalorimeter alpha spectrometry to simultaneously resolve alpha energies from $^{239}$ Pu, $^{240}$ Pu, $^{238}$ Pu, and $^{241}$ Am. The low-energy performance of the spectrometer system has been improved to allow measurement of energies as low as 5 keV, which gives a dynamic range of 1000. We have demonstrated this capability by simultaneously measuring the alpha particles and low-energy x-rays and internal conversion electrons emitted by an electroplated $^{240}$ Pu source.
机译:阿尔法粒子光谱法是用于核法证和环境监测的强大分析工具。研究表明,超导跃迁边缘传感器量热仪可产生无与伦比的α光谱能量分辨率。能量分辨率(在5.3 MeV下为1.06 keV FWHM)比当前最先进的硅探测器(在5.3 MeV下为8–10 keV)高出近一个数量级,因此可以测量包含多个放射性同位素的样品在使用硅探测器进行测量之前,需要进行昂贵且费时的放射化学分离。本文介绍了Los Alamos四通道微热量计α光谱仪的最新结果。我们准备了武器级prepared的来源,并演示了微热量计α光谱仪同时解析$ ^ {239} $ Pu,$ ^ {240} $ Pu,$ ^ {238} $ Pu和$$中的α能量的能力。 ^ {241} $上午。光谱仪系统的低能性能已得到改进,可以测量低至5 keV的能量,动态范围为1000。我们通过同时测量α粒子和低能X射线以及电镀的$ ^ {240} $ Pu源发出的内部转换电子。

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