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首页> 外文期刊>Nuclear instruments and methods in physics research >Charge-to-heat transducers exploiting the Neganov-Trofimov-Luke effect for light detection in rare-event searches
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Charge-to-heat transducers exploiting the Neganov-Trofimov-Luke effect for light detection in rare-event searches

机译:利用稀释事件搜索中的光学探测的Neganov-Trofimov-Luke效果的充电热传感器

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In this work we present how to fabricate large-area (15 cm(2)), ultra-low threshold germanium bolometric photo-detectors and how to operate them to detect few (optical) photons. These detectors work at temperatures as low as few tens of mK and exploit the Neganov-Trofimov-Luke (NTL) effect. They are operated as charge-to-heat transducers: the heat signal is linearly increased by simply changing a voltage bias applied to special metal electrodes, fabricated onto the germanium absorber, and read by a (NTD-Ge) thermal sensor. We fabricated a batch of five prototypes and ran them in different facilities with dilution refrigerators. We carefully studied how impinging spurious infrared radiation impacts the detector performances, by shining infrared photons via optical-fiber-guided LED signals, in a controlled manner, into the bolometers. We hence demonstrated how the radiation-tightness of the test environment tremendously enhances the detector performances, allowing to set electrode voltage bias up to 90 volts without any leakage current and signal-to-noise gain as large as a factor 12 (for visible photons). As consequence, for the first time we could operate large-area NTD-Ge-sensor-equipped NTL bolometric photo-detectors capable to reach sub 10-eV baseline noise (RMS). Such detectors open new frontiers for rare-event search experiments based on low light yield Ge-NTD equipped scintillating bolometers, such the CUPID neutrinoless double-beta decay experiment.
机译:在这项工作中,我们介绍了如何制造大面积(15厘米(2)),超低阈值锗电荷测定光检测器以及如何操作它们以检测少量(光学)光子。这些探测器在低至几十MK的温度下工作并利用Neganov-Trofimov-Luke(NTL)效应。它们被操作为充电 - 热传感器:通过简单地改变施加到特殊金属电极的电压偏压,制造在锗吸收层上的电压偏压,并由(NTD-GE)热传感器读取,热信号通过线性增加。我们制作了一批五种原型,并用稀释冰箱在不同的设施中运行它们。我们仔细研究了镜头红外线辐射如何通过光纤引导的LED信号通过光纤引导的方式闪烁红外光子,以受控的方式进入钻孔计。因此,我们证明了测试环境的辐射密封性极大地增强了检测器的性能,允许将高达90伏的电极电压偏置设定,而没有任何漏电流和信号到噪声增益,与因子12一样大(对于可见光子) 。因此,我们首次操作的大区域NTD-GE传感器的NTL气管光检测器能够达到亚10-EV基线噪声(RMS)。这种探测器为基于低光源GE-NTD配备的闪烁钻孔器的稀有事件搜索实验开辟了新的前沿,这种丘比特中性粘土双β衰变实验。

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