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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >The nonlinear optical properties of GaAs-based quantum wells with Kratzer Fues confining potential: Role of applied static fields and non-resonant laser radiation
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The nonlinear optical properties of GaAs-based quantum wells with Kratzer Fues confining potential: Role of applied static fields and non-resonant laser radiation

机译:基于GaAs的量子阱的非线性光学性能与Kratzer Fues限制潜力:应用静电场的作用和非共振激光辐射

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摘要

In the present paper, we report a theoretical investigations on the linear and nonlinear optical properties of a GaAs-based quantum well with the Kratzer-Fues confining potential, including the effects of external applied static electric, magnetic, and intense THz laser fields. The electronic structure of this system is obtained by using the effective-mass and envelope wave function approaches. Then, the coefficients of linear, third-order nonlinear, and total optical absorption (OACs) and relative refractive index changes (RICs) are calculated by using the iterative solutions of the compact-density matrix approach (CDMA). The obtained numerical results are reported as functions of the incident photon energy taking into account several values of static electric, static magnetic, and intense THz laser fields. These results show that the nonlinear optical properties of this structure are significantly affected by the magnitude of the external applied fields.
机译:在本文中,我们报告了对基于GaAs基量的线性和非线性光学性质的理论研究与Kratzer-Fues限制潜力,包括外部施加的静电,磁,磁性和激光的激光场的影响。 通过使用有效质量和包络波函数方法获得该系统的电子结构。 然后,通过使用紧凑密度矩阵方法(CDMA)的迭代解来计算线性,三阶非线性和总光学吸收(OAC)和相对折射率变化(RIC)的系数。 所获得的数值结果被报告为事件光子能量的函数,以考虑静电,静态磁,强度THz激光场的若干值。 这些结果表明,该结构的非线性光学性质受到外部施加场的大小的显着影响。

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