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首页> 外文期刊>Journal of Low Temperature Physics >Geant4 Simulations of the SuperCDMS iZIP Detector Charge Carrier Propagation and FET Readout
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Geant4 Simulations of the SuperCDMS iZIP Detector Charge Carrier Propagation and FET Readout

机译:SuperCDMS iZIP检测器电荷载流子传播和FET读出的Geant4模拟

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摘要

The SuperCDMS experiment aims to directly detect dark matter particles called WIMPs (weakly interacting massive particles). The detectors measure phonon and ionization energy due to nuclear and electron recoils from incident particles. The SuperCDMS Detector Monte Carlo group uses Geant4 to simulate electron-hole pairs (e~-/h~+) and low temperature phonons. We use these simulations in order to study energy deposition in the detectors. Phonons and electron-hole pairs are tracked in a crystal detector. Because of the band structure of the crystals, the electrons undergo oblique propagation. The charge electrodes on each side of the detector are biased at different voltages while the phonon sensors are grounded. This creates a nearly uniform electric field through the bulk of the detector, with a complex shape near the surfaces. The electric field is calculated from interpolating on a tetrahedral mesh. The resulting TES phonon readout, as well as the FET charge readout are simulated. To calculate the FET readout, the Shockley-Ramo theorem is applied to simulate the current in the FET. The goal of this paper is to describe the theory and implementation of calculating the electric field, performing the charge carrier propagation, and simulating the FET readout of the SuperCDMS detectors.
机译:SuperCDMS实验旨在直接检测称为WIMP(弱相互作用的大颗粒)的暗物质颗粒。检测器测量由于入射粒子产生的核和电子反冲而产生的声子和电离能。 SuperCDMS探测器的蒙特卡洛小组使用Geant4模拟电子-空穴对(e〜-/ h〜+)和低温声子。我们使用这些模拟来研究探测器中的能量沉积。在晶体检测器中跟踪声子和电子-空穴对。由于晶体的能带结构,电子经历倾斜传播。当声子传感器接地时,检测器每侧的充电电极会以不同的电压偏置。这会在整个探测器中产生几乎均匀的电场,并在表面附近形成复杂的形状。通过在四面体网格上进行插值来计算电场。模拟所得的TES声子读数以及FET电荷读数。为了计算FET的读数,应用Shockley-Ramo定理来模拟FET中的电流。本文的目的是描述计算电场,执行电荷载流子传播以及模拟SuperCDMS检测器的FET读数的理论和实现。

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