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Quantum well intermixing: materials modeling and device physics

机译:量子阱混合:材料建模和器件物理

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摘要

Quantum well composition intermixing is a thermal induced interdiffusion of the constituent atoms through the heterointerface. The intermixed structures created by both impurity induced and impurity free or vacancy promoted processes have recently attracted high attention. The interdiffusion mechanism is no longer confined to a single phase diffusion for two constituent atoms, but it can now consist of two or multiple phases and/or for multiple species, such as three cations interdiffusion and two pairs of cation-anion interdiffusion. A review on the impact of intermixing on device physics is presented with many interesting features. For instance, both compressive or tensile strain materials and both blue or red shifts in the bandgap can be achieved depending on the types of intermixing. The recent advancement in intermixing modified optical properties, such as absorption, refractive index as well as electro-optics effects are discussed. In addition, this paper will place a strong emphasis on the device application of the intermixing technology. The advantage of being able to tune the material provides a way to improve the performance of photodetectors and modulators. Attractive distributed-feedback and vertical cavity laser dynamics have been shown due to some unique device physics of the quantum well intermixing. Several state-of-the-art results will be summarized with an emphasis on its future development and directions.
机译:量子阱组成的混合是成分原子通过异质界面的热诱导相互扩散。最近,由杂质诱导和无杂质或空位促进过程产生的混合结构引起了高度关注。互扩散机制不再局限于两个组成原子的单相扩散,而是现在可以由两个或多个相和/或多个物种组成,例如三个阳离子互扩散和两对阳离子-阴离子互扩散。提出了关于混合对设备物理的影响的综述,其中包含许多有趣的功能。例如,取决于混合的类型,可以同时实现压缩或拉伸应变材料以及带隙的蓝移或红移。讨论了混合改进的光学性质(如吸收,折射率以及电光效应)的最新进展。此外,本文将重点介绍混合技术的设备应用。能够调谐材料的优势提供了一种改善光电探测器和调制器性能的方法。由于量子阱混合的一些独特的器件物理特性,已经显示出有吸引力的分布式反馈和垂直腔激光动力学。将总结一些最新的结果,重点是其未来的发展和方向。

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  • 作者

    Li EH;

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  • 年度 1998
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  • 原文格式 PDF
  • 正文语种 eng
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