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First test of a cryogenic scintillation module with a CaWO4 scintillator and a low-temperature photomultiplier down to 6 K

机译:带有CaWO4闪烁体和低至6 K的低温光电倍增管的低温闪烁模块的首次测试

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摘要

Future cryogenic experiments searching for rare events require reliable, efficient and robust techniques for the detection of photons at temperatures well below that to which low-temperature photomultipliers (PMT) were characterised. Motivated by this, we investigated the feasibility of a low-temperature PMT for the detection of scintillation from crystalline scintillators at T=6 K. The scintillation module was composed of a CaWO 4 scintillator and a low-temperature PMT D745B from ET Enterprises. The PMT responsivity was studied at T=290, 77 and 6 K using γ-quanta from 241Am (60 keV) and 57Co (122 and 136 keV) sources. We have shown that the low-temperature PMT retains its single photon counting ability even at cryogenic temperatures. At T=6 K, the response of the PMT decreases to 51±13% and 27±6%, when assessed in photon counting and pulse height mode, respectively. Due to the light yield increase of the CaWO 4 scintillating crystal, the overall responsivity of the scintillation modules CaWO4PMT is 94±15% (photon counting) and 48±8% (pulse height) when cooling to T=6 K. The dark count rate was found to be 20 s-1. The energy resolution of the module remains similar to that measured at room temperature using either of the detection modes. It is concluded that commercially available low-temperature PMT are well suited for detection of scintillation light at cryogenic temperatures. © 2010 Elsevier B.V. All rights reserved.
机译:未来的寻找稀有事件的低温实验需要可靠,有效和强大的技术来检测温度远低于低温光电倍增管(PMT)表征温度的光子。为此,我们研究了低温PMT在T = 6 K时检测晶体闪烁体闪烁的可行性。闪烁模块由CaWO 4闪烁体和ET Enterprises的低温PMT D745B组成。使用来自241Am(60 keV)和57Co(122和136 keV)的γ量子在T = 290、77和6 K下研究了PMT的响应度。我们已经表明,即使在低温下,低温PMT仍保留其单光子计数能力。在T = 6 K时,分别在光子计数和脉冲高度模式下评估时,PMT的响应分别降至51±13%和27±6%。由于CaWO 4闪烁晶体的光产率提高,因此当冷却至T = 6 K时,闪烁模块CaWO4PMT的整体响应度为94±15%(光子计数)和48±8%(脉冲高度)。发现速率为20 s-1。模块的能量分辨率仍然类似于使用两种检测模式在室温下测得的能量分辨率。结论是,可商购的低温PMT非常适合在低温下检测闪烁光。 ©2010 Elsevier B.V.保留所有权利。

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    Kraus, H; Mikhailik, VB;

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  • 年度 2010
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