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High-pressure operation of a xenon-GPSC/MSGC hybrid detector for hard X-ray spectrometry

机译:用于硬X射线光谱分析的氙气GPSC / MSGC混合探测器的高压操作

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摘要

The performance of a high-pressure xenon gas proportional scintillation counter/microstrip gas chamber (GPSC/MSGC) hybrid detector has been investigated for filling pressures from 1 up to 10 bar, for 22-, 30- and 60-keV photons. GPSC/MSGC hybrid detectors are based on a xenon-GPSC instrumented with a CsI-coated microstrip plate photosensor placed directly within the xenon envelope, as a substitute for the photomultiplier tube. This design avoids the constraints due to the use of a quartz scintillation window for GPSC-photosensor coupling, which absorbs a significant amount of scintillation and is a drawback for applications where large detection areas and high filling pressures are needed. The lowest energy resolutions are achieved for 2 bar (5.5% and 3.4%, FWHM, for 22- and 60-keV photons, respectively). Increasing the pressure to the 5-6 bar range, competitive energy resolutions of 7% and 4.5% are still achieved for 22- and 60-keV photons, respectively. This detector could be a compelling alternative in applications where compactness, large detection area, insensitivity to strong magnetic fields, room temperature operation, large signal-to-noise ratio and good energy resolution are important requirements.
机译:已经研究了高压氙气比例闪烁计数器/微带气室(GPSC / MSGC)混合检测器的性能,适用于22-keV,30-keV和60-keV的光子从1到10 bar的填充压力。 GPSC / MSGC混合探测器基于氙气GPSC,该氙气GPSC装有直接涂在氙气外壳内的CsI涂层微带板光电传感器,以替代光电倍增管。这种设计避免了由于GPSC-光传感器耦合使用石英闪烁窗而造成的限制,该石英闪烁窗吸收了大量的闪烁,对于需要大检测面积和高填充压力的应用来说是一个缺点。 2 bar的能量分辨率最低(22-keV和60-keV光子分别为5.5%和3.4%,FWHM)。将压力增加到5-6 bar的范围时,对于22-keV和60-keV的光子,仍然分别获得了7%和4.5%的竞争能量分辨率。该探测器可能是紧凑型,大探测面积,对强磁场不敏感,室温操作,大信噪比和良好能量分辨率等重要要求的应用中的理想选择。

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