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Multiplexed microcalorimeter arrays for precision measurements from microwave to gamma-ray wavelengths

机译:多重量热仪阵列,用于从微波到伽马射线波长的精确测量

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Cryogenic microcalorimeters are a promising technology for ultrasensitive measurements of electromagnetic radiation from microwave to gamma-ray wavelengths. Cryogenic microcalorimeters derive their exquisite sensitivity from the minimal thermal noise at typical operating temperatures near 0.1 K. The core technology of the microcalorimeters under development at NIST is independent of the application wavelength: thin-film thermometers whose temperature and resistance change in response to absorbed energy. However, the absorbing structures used to couple radiation into the thermometers depend strongly on the application wavelength. Here, we describe microcalorimeter technology and its application to microwave, X-ray, and gamma-ray measurements. In particular, we present results from a 13 pixel gamma-ray microcalorimeter array with a coadded energy resolution of 51 eV FWHM at 103 keV and a single pixel with resolution of 27 eV FWHM at 103 keV. One application for gamma-ray microcalorimeters is to deconvolve the complex spectrum of a mixture of Pu isotopes near 100 keV.
机译:低温微热量计是一种从微波到伽马射线波长的电磁辐射的超灵敏测量技术。低温微量热量计的出色灵敏度来自于典型工作温度接近0.1 K时的最小热噪声。NIST研发的微量热量计的核心技术与应用波长无关:薄膜温度计的温度和电阻随吸收的能量而变化。但是,用于将辐射耦合到温度计中的吸收结构在很大程度上取决于应用波长。在这里,我们描述了微热量计技术及其在微波,X射线和伽马射线测量中的应用。特别是,我们给出了13个像素的伽马射线微热量计阵列的结果,该阵列在103 keV时的能量分辨率为51 eV FWHM,在103 keV时的分辨率为27 eV FWHM。伽马射线量热仪的一种应用是解卷积100 keV附近的Pu同位素混合物的复杂光谱。

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