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首页> 外文期刊>Physica, B. Condensed Matter >Photoluminescence energy transitions in GaAs2Ga_(1-x)Al_xAs double quantum wells: Electric and magnetic fields and hydrostatic pressure effects
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Photoluminescence energy transitions in GaAs2Ga_(1-x)Al_xAs double quantum wells: Electric and magnetic fields and hydrostatic pressure effects

机译:GaAs2Ga_(1-x)Al_xAs双量子阱中的光致发光能量跃迁:电场和磁场以及静水压力效应

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摘要

The photoluminescence energy transitions in GaAs2Ga_(1-x)Al_xAs coupled double quantum wells are presented by considering the simultaneous effects of applied electric and magnetic fields and hydrostatic pressure. Calculations have been made in the framework of the effective mass and parabolic band approximations and using a variational procedure. The electric field is taken to be oriented along the growth direction of the heterostructure whereas for the magnetic field both in-plane and in-growth directions have been considered. The results show that the hydrostatic pressure and the applied electric field are two useful tools to tune the direct and indirect exciton transitions in such heterostructures. Our results are in good agreement with previous experimental findings in double quantum wells under applied electric field and hydrostatic pressure.
机译:考虑到施加的电场和磁场以及静水压力的同时影响,给出了GaAs2Ga_(1-x)Al_xAs耦合双量子阱中的光致发光能量跃迁。在有效质量和抛物线带近似的框架内并使用变分程序进行了计算。电场被认为是沿着异质结构的生长方向取向的,而对于磁场,已经考虑了平面方向和生长方向。结果表明,静水压力和施加的电场是调节此类异质结构中直接和间接激子跃迁的两个有用工具。我们的结果与先前在电场和静水压力下在双量子阱中的实验结果相吻合。

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