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Electron Transport Properties Of Bulk Mercury-cadmium-telluride At 77 K

机译:77 K下大块汞-碲化镉的电子输运性质

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A Monte Carlo simulation of electron transport in mercury-cadmium-telluride is performed in order to extract the most important material kinetic parameters such as electron drift velocity, mean energy, effective mass, differential mobility, diffusion coefficient, impact ionization rate, velocity and energy relaxation rates. Most of these quantities are necessary for the developments of macroscopic numerical models. Moreover, for the calculated quantities, analytical interpolation formula are given in order to achieve easy implementation in numerical codes. The main results demonstrate that hot-electron transport and impact ionization processes occur for relatively weak electric fields, that is around 100 V/cm. The high mobility of mercury-cadmium-telluride, which makes it a good material for fast applications, is verified. Finally, a comparison between the Monte Carlo calculations, hydrodynamic simulations and experimental data is made for both stationary and transient regimes, which validates the results.
机译:为了提取最重要的材料动力学参数,例如电子漂移速度,平均能量,有效质量,微分迁移率,扩散系数,碰撞电离速率,速度和能量,进行了汞-碲化镉中电子传输的蒙特卡洛模拟放松率。这些数量中的大多数对于开发宏观数值模型是必需的。此外,对于计算量,给出了解析插值公式,以便于在数字代码中轻松实现。主要结果表明,在相对较弱的电场(约100 V / cm)下,会发生热电子传输和碰撞电离过程。汞-碲化镉镉的高迁移率使其成为快速应用的良好材料,已得到验证。最后,比较了稳态和瞬态两种情况下的蒙特卡洛计算,流体动力学模拟和实验数据,从而验证了结果。

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