OPTICAL ABSORPTION IN SEMICONDUCTOR NANOWIRE MEDIATED BY ELECTRON-POLAR OPTICAL PHONON AND SPIN-ORBIT INTERACTIONS

T. K. Ghukasyan
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Abstract

The intrasubband and intersubband absorption of light by free charge carriers in a semiconductor nanowire upon scattering by polar optical phonons mediated by Rashba and Dresselhaus spin-orbit interactions has been studied. The dependence of the absorption coefficient on the energy of the incident photon is investigated by counting the transitions between different conduction subbands. It is shown that the spin-orbit interaction leads to an increase in the coefficient of intrasubband and intersubband absorption of light, with the peaks of the absorption coefficient being determined by the energies of the absorbed photon and the absorbed or emitted phonon. In this case, the difference between the values of the absorption coefficients with or without spin-orbit interaction has maximum in the range of the local minimum of the absorption coefficient obtained by ignoring the spin-orbit coupling.
电子-极性光声子和自旋轨道相互作用介导半导体纳米线中的光吸收
研究了在Rashba和Dresselhaus自旋轨道相互作用下,半导体纳米线中自由载流子被极性光学声子散射时对光的亚带内和亚带间吸收。通过计算不同导子带之间的跃迁,研究了吸收系数与入射光子能量的关系。结果表明,自旋轨道相互作用导致子带内和子带间光吸收系数的增加,吸收系数的峰值由吸收光子和吸收或发射声子的能量决定。在这种情况下,在忽略自旋轨道耦合得到的吸收系数局部最小值范围内,有无自旋轨道相互作用的吸收系数值之差最大。
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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