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Thermal detectors as x‐ray spectrometers

机译:热探测器作为X射线光谱仪

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We show that sensitive thermal detectors should be useful for measuring very small energy pulses, such as those produced by the absorption of x‐ray photons. The measurement uncertainty can be very small, making the technique promising for high resolution nondispersive x‐ray spectroscopy. We derive the limits to the energy resolution of such thermal detectors. We use these to find the resolution to be expected for a detector suitable for x‐ray spectroscopy in the 100–10 000 eV range. If there is no noise in the thermalization of the x‐ray, resolution better than 1 eV full width at half maximum (FWHM) is possible for detectors operating at 0.1 K. Energy loss in the conversion of the photon energy to heat is a potential problem. Statistical fluctuations of lost energy would reduce the energy resolution of the detector. The loss mechanisms may include emission of photons or electrons, or the trapping of energy in long‐lived metastable states. Fluctuations in the phonon spectrum could also limit the resolution if phonon relaxation times are very long. We give conceptual solutions for each of these possible problems.
机译:我们表明,灵敏的热探测器应可用于测量非常小的能量脉冲,例如由吸收X射线光子产生的能量脉冲。测量不确定度可能很小,这使得该技术有望用于高分辨率非分散x射线光谱学。我们得出了这种热探测器的能量分辨率的极限。我们使用这些来找到适用于100–10 000 eV范围内的X射线光谱检测器的预期分辨率。如果在X射线的热化过程中没有噪声,则对于工作在0.1 K的探测器,分辨率可能会优于半高全宽(FWHM)的1 eV。在将光子能量转换为热能时,能量损失是一个潜在的问题。能量损失的统计波动会降低检测器的能量分辨率。损耗机制可能包括光子或电子的发射,或处于长寿命亚稳态的能量捕获。如果声子弛豫时间很长,声子频谱的波动也可能会限制分辨率。我们针对这些可能的问题中的每一个给出了概念性的解决方案。

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    《Journal of Applied Physics 》 |1984年第5期| P.1257-1262| 共6页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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