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Metallic magnetic calorimeters (MMC): detectors for high-resolution X-ray spectroscopy

机译:金属磁热计(MMC):用于高分辨率X射线光谱学的探测器

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摘要

X-ray detectors based on the concept of magnetic calorimetry are well suited for high-resolution spectroscopy. Metallic magnetic calorimeters (MMC) make use of a metallic paramagnetic temperature sensor, which is in tight thermal contact with a metallic X-ray absorber. The paramagnetic sensor is placed in a small magnetic field. Its magnetization is used to monitor the temperature, which in turn is related to the internal energy of the calorimeter. High-energy resolution can be obtained by using a low-noise, high-bandwidth DC SQUID to measure the small change in magnetization upon the absorption of an X-ray. With recent prototype detectors an energy resolution of ΔE_(FWHM) = 3.4 eV for X-ray energies up to 6.5 keV has been achieved. We discuss general design considerations, the thermodynamic properties of such calorimeters, the energy resolution, and the various sources of noise, which are observed in MMCs.
机译:基于磁热法概念的X射线探测器非常适合高分辨率光谱学。金属磁热计(MMC)使用金属顺磁温度传感器,该传感器与金属X射线吸收器紧密热接触。顺磁传感器放置在小的磁场中。它的磁化强度用于监控温度,而温度又与热量计的内部能量有关。通过使用低噪声,高带宽的DC SQUID来测量吸收X射线后磁化强度的微小变化,可以获得高能量分辨率。使用最新的原型探测器,对于高达6.5 keV的X射线能量,其能量分辨率为ΔE_(FWHM)= 3.4 eV。我们讨论了在MMC中观察到的一般设计注意事项,此类量热仪的热力学性质,能量分辨率以及各种噪声源。

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