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Cryogenic design and operation of liquid helium in an electron bubble chamber towards low energy solar neutrino detectors

机译:面向低能太阳中微子探测器的电子气泡室内液氦的低温设计和运行

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We are developing a new cryogenic neutrino detector: electron bubble chamber, using liquid helium as the detecting medium, for the detection of low energy p-p reaction neutrinos (<420 keV), from the Sun. The program focuses in particular on the interactions of neutrinos scattering off atomic electrons in the detecting medium of liquid helium, resulting in recoil electrons which can be measured. We designed and constructed a small test chamber with 1.5 L active volume to start the detector R&D, and performed experimental proofs of the operation principle. The test chamber is a stainless steel cylinder equipped with five optical windows and ten high voltage cables. To shield the liquid helium chamber against the external heat loads, the chamber is made of double-walled jacket cooled by a pumped helium bath and is built into a LN_2/LHe cryostat, equipped with 80 K and 4 K radiation shields. A needle valve for vapor helium cooling was used to provide a 1.7-4.5 K low temperature environments. The cryogenic test chamber has been successfully operated to test the performance of Gas Electron Multipliers (GEMs) in He and He + H_2 at temperatures in the range of 3-293 K. This paper will give an introduction on the cryogenic solar neutrino detector using electron bubbles in liquid helium, then present the cryogenic design and operation of liquid helium in the small test chamber. The general principles of a full-scale electron bubble detector for the detection of low energy solar neutrinos are also proposed.
机译:我们正在开发一种新型的低温中微子探测器:使用液氦作为检测介质的电子气泡室,用于探测来自太阳的低能p-p反应中微子(<420 keV)。该程序特别关注液氦检测介质中中微子从原子电子上散射出来的相互作用,从而产生可以测量的反冲电子。我们设计并建造了一个活动容积为1.5 L的小型测试室,以启动检测器的研发,并对操作原理进行了实验验证。测试室是一个不锈钢圆柱体,配有五个光学窗口和十根高压电缆。为了屏蔽液氦腔室免受外部热负荷,该腔室由双层壁护套制成,该夹套由泵送的氦气浴冷却,并内置于LN_2 / LHe低温恒温器中,该恒温器配有80 K和4 K辐射屏蔽。用于蒸气氦气冷却的针阀用于提供1.7-4.5 K的低温环境。低温测试室已经成功运行,可以测试3-293 K范围内的He和He + H_2中的气体电子倍增器(GEM)的性能。本文将介绍使用电子的低温太阳中微子探测器。液氦中的气泡,然后介绍了小型测试室中液氦的低温设计和操作。还提出了用于检测低能太阳中微子的全尺寸电子气泡探测器的一般原理。

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