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电场和磁场对椭圆芯-多壳层量子线激子特性的影响

Electric and magnetic field effects on the excitonic properties of elliptic core-multishell quantum wires.

作者信息

Macêdo R, Costa e Silva J, Chaves Andrey, Farias G A, Ferreira R

机构信息

Departamento de Ciências Exatas e Naturais, Universidade Federal Rural do Semi-Árido, Caixa Postal 6030, 59600-900 Mossoró, RN, Brazil. SUPA School of Physics and Astronomy, University of Glasgow, Glasgow G12 8QQ, UK.

出版信息

J Phys Condens Matter. 2013 Dec 4;25(48):485501. doi: 10.1088/0953-8984/25/48/485501. Epub 2013 Oct 31.

Abstract

The effect of eccentricity distortions of core-multishell quantum wires on their electron, hole and exciton states is theoretically investigated. Within the effective mass approximation, the Schrödinger equation is numerically solved for electrons and holes in systems with single and double radial heterostructures, and the exciton binding energy is calculated by means of a variational approach. We show that the energy spectrum of a core-multishell heterostructure with eccentricity distortions, as well as its magnetic field dependence, are very sensitive to the direction of an externally applied electric field, an effect that can be used to identify the eccentricity of the system. For a double heterostructure, the eccentricities of the inner and outer shells play an important role on the excitonic binding energy, especially in the presence of external magnetic fields, and lead to drastic modifications in the oscillator strength.

摘要

从理论上研究了核-多壳层量子线的偏心畸变对其电子、空穴和激子态的影响。在有效质量近似下,对具有单重和双重径向异质结构的系统中的电子和空穴,数值求解了薛定谔方程,并通过变分法计算了激子结合能。我们表明,具有偏心畸变的核-多壳层异质结构的能谱及其磁场依赖性对外加电场的方向非常敏感,这一效应可用于识别系统的偏心度。对于双重异质结构,内壳层和外壳层的偏心度对激子结合能起着重要作用,特别是在存在外部磁场的情况下,并导致振子强度的剧烈变化。

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