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Detection of liquid xenon scintillation light with a silicon photomultiplier

机译:用硅光电倍增管检测液态氙闪烁光

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We have studied the feasibility of a silicon photomultiplier (SiPM) to detect liquid xenon (LXe) scintillation light. The SiPM was operated inside a small volume of pure liquid xenon (LXe), at -95℃, irradiated with an internal ~(241)Am α source. The gain of the SiPM at this temperature was estimated to be 1.8 x 10~6 at a 52 V bias voltage. Based on the geometry of the setup, the quantum efficiency of the SiPM was estimated to be 22% (5.5% is the photon detection efficiency) at the Xe wavelength of 178nm. The low excess noise factor (about 1.05), high single photoelectron detection efficiency, and low bias voltage of SiPMs make them attractive alternative UV photon detection devices to photomultiplier tubes (PMTs) for liquid xenon detectors, especially for experiments requiring a very low energy detection threshold, such as neutralino dark matter searches.
机译:我们已经研究了硅光电倍增管(SiPM)检测液态氙(LXe)闪烁光的可行性。 SiPM在-95℃的少量纯液体氙(LXe)内操作,并用内部〜(241)Amα光源辐照。在52 V偏置电压下,SiPM在该温度下的增益估计为1.8 x 10〜6。根据设置的几何形状,在178nm的Xe波长下,SiPM的量子效率估计为22%(5.5%是光子检测效率)。低过大的噪声因子(约1.05),高的单光电子检测效率和低的SiPM偏置电压使它们成为用于液氙检测器的光电倍增管(PMT)的替代紫外光子检测设备,特别是对于要求非常低能量检测的实验阈值,例如中性暗物质搜索。

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