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首页> 外文期刊>Journal of Electronic Materials >Hydrostatic Pressure and Temperature Effect on the Electron-Related Optical Responses in Symmetric and Asymmetric n-Type Double Delta-Doped GaAs Quantum Well Under Terahertz Laser Field
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Hydrostatic Pressure and Temperature Effect on the Electron-Related Optical Responses in Symmetric and Asymmetric n-Type Double Delta-Doped GaAs Quantum Well Under Terahertz Laser Field

机译:在太赫兹激光场下的对称和不对称N型双δ掺杂GaAs量子井中的静压压力和温度效应

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摘要

The effects of non-resonant intense laser fields on the intersubband-related light absorption and relative refractive index change coefficients in symmetric and asymmetric n-type double -doped GaAs quantum wells are investigated. Systems are assumed to be also under the influence of hydrostatic pressure and the change of temperature. The single band effective-mass and envelope function approximations, together with analytical expressions for the linear and third-order nonlinear optical coefficients are used as theoretical tools. According to the numerical outcome, the nonlinear optical response is significantly affected by the intense non-resonant laser radiation, as a result of the associated distortion of conduction band energy profiles. For instance, it is revealed there is a laser-induced transition of the confining potential from double-delta geometry to single-triangular-like shape. Given the additional variations associated with the application of hydrostatic pressure and temperature, all these external probes could be used to control and suitablly tune the electronic and optical properties of GaAs n-type double -doped GaAs quantum wells.
机译:在带间相关的光吸收和在对称和非对称的n型掺杂的双GaAs量子阱相对折射率变化系数非谐振强激光磁场的影响进行了研究。系统被假定为也静水压力的影响,温度的变化下。单频段有效质量和包络函数近似值,具有用于线性和三阶非线性系数的解析表达式一起用作理论工具。根据数值结果,非线性光学响应显著由强烈非谐振的激光辐射的影响,因为的导带能量分布相关联的失真的结果。例如,揭示有所述限制电位的从双 - 德尔塔几何单三角形状的激光诱导的过渡。考虑到与流体静压力和温度的应用相关联的附加的变化形式中,所有这些外部探头可以用来控制和调suitablly的GaAs的n型掺杂的双GaAs量子阱的电子和光学性质。

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