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OPTICAL INTERSUBBAND TRANSITIONS IN CONDUCTION-BAND QUANTUM WELLS

机译:导带量子阱中的光子带间跃迁

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In this work, theoretical formulation for optical intersubband transitions has been developed within the framework of a simple one-band model by including the spatial variation of effective mass; in quantum-well heterostructures. It has been shown how the in-plane polarized optical inter-conduction-subband transitions could be made large in direct-band-gap semiconductor quantum wells. However, calculations have confirmed that the normal-to-plane polarized optical intersubband transition is still dominant. The dependence of optical intersubband transitions on quantum-well structure geometry and parameters has been investigated, which provides insights to the underlying physics, and suggests a way how experiments could be carried out to examine these physical phenomena related to optical intersubband transitions. [References: 31]
机译:在这项工作中,通过包含有效质量的空间变化,在一个简单的单频带模型的框架内开发了光学子带间过渡的理论公式。在量子阱异质结构中。已经表明如何在直接带隙半导体量子阱中使平面偏振光导通-子带内跃迁变大。然而,计算已确认法向平面偏振光子带间过渡仍然占主导地位。已经研究了光学子带间跃迁对量子阱结构几何形状和参数的依赖性,这为基础物理学提供了见识,并提出了一种可以如何进行实验以检查与光学子带间跃迁相关的物理现象的方式。 [参考:31]

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