Effect of an Inverse Parabolic Confining Electric Potential on Third Harmonic Generation in Cylindrical Quantum Wires

M. Tshipa
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引用次数: 1

Abstract

A theoretical investigation of the effect of an inverse parabolic potential on third harmonic generation in cylindrical quantum wires is presented. The wave functions are obtained as solutions to Schrödinger equation solved within the effective mass approximation. It turns out that peaks of the third harmonic generation susceptibility (THGS) associated with nanowires of small radii occur at larger photon energies as compared to those associated with quantum wires of larger radii. The inverse parabolic potential red-shifts peaks of the THGS, and suppresses the amplitude of the THGS. THGS associated with higher radial quantum numbers is diminished in magnitude and blue-shifted, as a function of the photon energy. As a function of the inverse parabolic potential, the THGS still characterized by peaks, and the peaks shift to lower values of the potential as the photon energy increases.
反抛物型围电位对圆柱形量子线中三次谐波产生的影响
本文从理论上研究了反抛物势对圆柱形量子线中三次谐波产生的影响。波函数是在有效质量近似内求解Schrödinger方程的解。结果表明,与大半径的量子线相比,与小半径纳米线相关的三次谐波产生磁化率(THGS)峰值出现在更大的光子能量下。逆抛物线势使THGS的峰值红移,抑制了THGS的振幅。作为光子能量的函数,与较高的径向量子数相关的THGS在量级上减小并且蓝移。作为反抛物势的函数,THGS仍然具有峰值特征,并且随着光子能量的增加,峰值向较低的势值移动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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