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Demonstration and comparison of photomultiplier tubes at liquid Argon temperature

机译:液体氩温度下光电倍增管的演示和比较

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摘要

Liquified noble gases are widely used as a target in direct Dark Matter searches. Signals from scintillation in the liquid, following energy deposition from the recoil nuclei scattered by Dark Matter particles (e.g. WIMPs), should be recorded down to very low energies by photo-sensors suitably designed to operate at cryogenic temperatures. Liquid Argon based detectors for Dark Matter searches currently implement photomultiplier tubes for signal read-out. In the last few years PMTs with photocathodes operating down to liquid Argon temperatures (87 K) have been specially developed with increasing Quantum Efficiency characteristics. The most recent of these, Hamamatsu Photonics K.K. Mod. R11065 with peak QE up to about 35%, has been extensively tested within the R&D program of the WArP Collaboration. During these tests the Hamamatsu PMTs showed excellent performance and allowed obtaining a light yield around 7 phel/keV(ee) in a Liquid Argon detector with a photocathodic coverage in the 12% range, sufficient for detection of events down to few keV(ee) of energy deposition. This shows that this new type of PMT is suited for experimental applications, in particular for new direct Dark Matter searches with LAr-based experiments.
机译:液化稀有气体被广泛用作直接暗物质搜索的目标。来自暗物质粒子(例如WIMP)散射的反冲核的能量沉积之后,液体中闪烁的信号应通过适合在低温下工作的光传感器记录到非常低的能量。用于暗物质搜索的基于液态氩的检测器目前使用光电倍增管进行信号读取。在最近几年中,随着光量子效率特性的提高,专门开发了具有可在液态氩温度(87 K)下工作的光阴极的PMT。其中最新的Hamamatsu Photonics K.K. Mod。 Q110的最高QE的R11065已在WArP Collaboration的R&D计划中进行了广泛的测试。在这些测试中,滨松PMT表现出出色的性能,并在液阴极检测器中获得了大约7 phel / keV(ee)的光产率,光阴极覆盖率在12%范围内,足以检测低至keV(ee)的事件。能量沉积。这表明这种新型的PMT适用于实验应用,尤其适用于基于LAr的实验进行的直接暗物质搜索。

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