InAlN/AlN/GaN异质结构中的多子带极性光学声子散射

Qun Li, Yao Li, Yachao Zhang, Jincheng Zhang
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引用次数: 0

摘要

在InAlN/AlN/GaN异质结构中,二维电子气体(2DEG)的高密度导致了较高子带的占据,因此在计算极性光学声子(POP)散射时必须考虑多子带占据和子带间散射。通过求解Schrödinger‐Poisson方程,计算了InAlN/AlN/GaN异质结构的子带能量、四个最低子带的波函数和费米能级等物理参数,并将其应用于多子带POP散射模型。研究了受多子带POP散射限制的迁移率与温度和2℃密度的关系。结果表明,多子带占据和子带间散射在电子输运中起重要作用。较高的子带对室温电子迁移率贡献了26%。对两种忽略多子带占用和简化内散射过程的简化POP散射模型进行了评价。结果表明,两种简化模型在受POP散射限制的移动量上都引入了明显的偏差。各子带中迁移率的相对大小取决于动量弛豫时间的能量依赖性和各子带的能量分布。这篇文章受版权保护。版权所有。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi‐subband Polar Optical Phonon Scattering in InAlN/AlN/GaN Heterostructures
The high density of two‐dimensional electron gas (2DEG) in InAlN/AlN/GaN heterostructures results in significant occupation of higher subbands, it is thus imperative to consider multi‐subband occupation and inter‐subband scattering in the calculations of polar optical phonon (POP) scattering. The physical parameters, such as subband energies, wave functions of the four lowest subbands, and Fermi level of InAlN/AlN/GaN heterostructures, are calculated by solving the Schrödinger‐Poisson equations and applied to the multi‐subband POP scattering model. The dependence of mobility, which is limited by multi‐subband POP scattering, on temperature and 2DEG density is studied. The results show that multi‐subband occupation and inter‐subband scattering play important roles in electron transport. The higher subbands contribute 26% to room‐temperature electron mobility. Two simplified POP scattering models, which either ignore multi‐subband occupation or simplify the in‐scattering processes are evaluated. The results show that both simplified models introduce significant deviations in the mobilities that are limited by POP scattering. The relative magnitudes of mobility in each subband depend on the energy dependence of momentum relaxation time and the energy distribution of each subband.This article is protected by copyright. All rights reserved.
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