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Development of a cryogenic detection concept for GNO

机译:开发用于GNO的低温检测概念

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摘要

The Gallium-Neutrino-Experiment at GNO measures solar neutrinos radiochemically via the reaction ~(71)Ga(v,e)~(71)Ge. In order to reduce statistical and systematic uncertainties in detecting the decay of ~(71)Ge to ~(71)Ga, a favourable way could be the use of high-resolution cryogenic detectors instead of the presently integrated miniaturized proportional counters. After the successful development of a highly efficient 4π-detector, optimization of thermal Ge-deposition and decoupling of deposition and detection, present activity concentrates on low background considerations, enhancement of external and internal shielding of the cryostat and a long-term run with artificially activated ~(71)Ge to prove the feasibility of 'cryoGNO' in our Underground Laboratory in Garching.
机译:GNO的镓中微子实验通过〜(71)Ga(v,e)〜(71)Ge反应以放射化学方式测量太阳中微子。为了减少在检测〜(71)Ge到〜(71)Ga的衰减中的统计和系统不确定性,一种有利的方法可能是使用高分辨率低温探测器代替当前集成的小型比例计数器。在成功开发出高效的4π检测器,优化热Ge沉积以及沉积和检测的解耦后,目前的活动集中在低背景因素,增强低温恒温器的内部和内部屏蔽以及长期人工操作在我们位于Garching的地下实验室中激活了〜(71)Ge来证明“ cryoGNO”的可行性。

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