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首页> 外文期刊>Nuclear instruments and methods in physics research >Design and performance of a modular low-radioactivity readout system for cryogenic detectors in the CDMS experiment
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Design and performance of a modular low-radioactivity readout system for cryogenic detectors in the CDMS experiment

机译:CDMS实验中用于低温探测器的模块化低放射性读出系统的设计和性能

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The Cryogenic Dark Matter Search (CDMS) experiment employs ultra-cold solid-state detectors to search for rare events resulting from WIMP-nucleus scattering. An innovative detector packaging and readout system has been developed to meet the unusual combination of requirements for: low temperature, low radioactivity, low energy threshold, and large channel count. Features include use of materials with low radioactivity such as multi-layer KAPTON laminates for circuit boards; immunity to microphonic noise via a vacuum coaxial wiring design, manufacturability, and modularity.rnThe detector readout design had to accommodate various electronic components which have to be operated in close proximity to the detector as well maintaining separate individual temperatures (ranging from 600 mK to 150K) in order to achieve optimal noise performance. The paper will describe the general electrical, thermal, and mechanical designs of the CDMS readout system, as well as presenting the theoretical and measured performance of the detector readout channels.
机译:低温暗物质搜索(CDMS)实验采用超冷固态探测器来搜索WIMP核散射引起的稀有事件。已经开发出一种创新的探测器包装和读出系统,可以满足以下要求的不寻常组合:低温,低放射性,低能量阈值和大通道数。功能包括使用放射性低的材料,例如用于电路板的多层KAPTON层压板;通过真空同轴布线设计,可制造性和模块化来抵抗麦克风噪声.rn探测器的读数设计必须容纳各种电子组件,这些组件必须在探测器附近操作,并保持单独的温度(范围从600 mK到150K) )以达到最佳的噪声性能。本文将描述CDMS读出系统的一般电气,热和机械设计,并介绍检测器读出通道的理论和测量性能。

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