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首页> 外文期刊>IEEE Transactions on Electron Devices >Modeling semiconductor devices with position-dependent material parameters
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Modeling semiconductor devices with position-dependent material parameters

机译:使用与位置相关的材料参数建模半导体器件

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摘要

An overview of the transport model describing electron and hole motion and density in solids with position-dependent band structures is presented. This includes materials with nonuniform composition such as graded heterojunctions, and devices with highly doped regions such as the emitter region of bipolar transistors and solar cells. Hot-electron and quantum mechanical effects are not considered. Effects due to carrier degeneracy, changes in the energy-band edges due to spatial variations in electron affinity and bandgap, and spatial variations in the density of states produce terms in the carrier- and current-density equations in addition to those found in the conventional Shockley model. These new terms are discussed. The general energy-band diagram relating the electrostatic potential, electron affinity, and bandgap of a nonuniform semiconductor is given. The current densities are expressed in terms of gradients of quasi-Fermi level and the carrier densities in terms of normalization integrals. The concepts of generalized drift and diffusion are discussed. The transport equations applicable to parabolic bands, nondegenerate material, and the rigid-band model are presented. Various device applications are given. Limitations in the underlying theory and key approximations used in device analysis are discussed.
机译:介绍了传输模型的概述,该模型描述了具有位置相关能带结构的固体中的电子和空穴运动以及密度。这包括具有不均匀成分的材料(例如渐变异质结)以及具有高掺杂区域(例如双极晶体管和太阳能电池的发射极区域)的器件。不考虑热电子和量子力学效应。载流子退化,电子亲和力和带隙的空间变化引起的能带边缘变化,以及状态密度的空间变化引起的载流子和电流密度方程中,除常规方法外,还产生其他项。肖克利模型。讨论了这些新术语。给出了与不均匀半导体的静电势,电子亲和力和带隙有关的一般能带图。电流密度用准费米能级的梯度表示,载流子密度用归一化积分表示。讨论了广义漂移和扩散的概念。提出了适用于抛物线带,非简并材料和刚性带模型的输运方程。给出了各种设备应用。讨论了基础理论的局限性以及在设备分析中使用的关键近似值。

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