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首页> 外文期刊>Superlattices and microstructures >Absorption coefficient and refractive index changes of a quantum ring in the presence of spin-orbit couplings: Temperature and Zeeman effects
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Absorption coefficient and refractive index changes of a quantum ring in the presence of spin-orbit couplings: Temperature and Zeeman effects

机译:自旋轨道耦合存在下量子环的吸收系数和折射率变化:温度和塞曼效应

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Effects of applied magnetic field, temperature and dimensions on the optical absorption coefficients (AC) and refractive index (RI) changes of a GaAs quantum ring are investigated in the presence of both Rashba and Dresselhaus spin-orbit interactions (SOI). To this end, the finite difference method (FDM) is used in order to numerically calculate the energy eigenvalues and eigenstates of the system while the compact density matrix approach is hired to calculate the optical properties. It is shown that application of magnetic field, temperature as well as the geometrical size in the presence of spin-orbit interactions, alter the electronic structure and consequently influence the linear and third-order nonlinear optical absorption coefficients as well as the refractive index changes of the system. Results show an obvious blue shift in optical curves with enhancing external magnetic field and temperature while the increment of dimensions result in red shift.
机译:在存在Rashba和Dresselhaus自旋轨道相互作用(SOI)的情况下,研究了施加的磁场,温度和尺寸对GaAs量子环的光吸收系数(AC)和折射率(RI)变化的影响。为此,使用有限差分法(FDM)来数值计算系统的能量本征值和本征态,同时使用紧凑密度矩阵方法来计算光学特性。结果表明,在存在自旋轨道相互作用的情况下,磁场,温度以及几何尺寸的施加会改变电子结构,从而影响线性和三阶非线性光学吸收系数以及折射率的变化。系统。结果表明,随着外部磁场和温度的提高,光学曲线出现明显的蓝移,而尺寸的增加导致红移。

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