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Optical characteristics of GaAs/GaAsSb/GaAs coaxial single quantum-well nanowires with different Sb components

机译:具有不同Sb组件的GaAs / Gaassb / GaAs同轴单量子孔纳米线的光学特性

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III-V ternary alloy quantum-wells have become a hot topic in recent years. Especially, GaAs/GaAsSb quantum wells have attracted increasing attention due to their numerous applications in the field of near-infrared optoelectronic devices. With the further reduction of dimensions, GaAs/GaAsSb nanowires show many special properties compared to their quantum well structures. In this work, GaAs/GaAs1-xSbx/GaAs coaxial single quantum-well nanowires with different Sb composition were grown by molecular beam epitaxy. The band structure and the optical properties were investigated through power-dependent and temperature-dependent photoluminescence measurement. It has been found that a deeper quantum well is created with the increase of Sb component. Thanks to the deeper quantum well, more effective electron confinement has been realized, the emission from the sample can still be detected up to room temperature. The different trend of peak position and shape at various temperatures also supports the improved temperature stability of the samples. These results will be beneficial for the design of alloy quantum wells, and will facilitate the development of alloy quantum-well based devices.
机译:III-V三元合金量子井近年来成为一个热门话题。特别是,由于其近红外光电器件领域的许多应用,GaAs / Gaassb量子孔具有越来越多的关注。随着尺寸的进一步减小,GaAs / Gaassb纳米线与它们的量子阱结构相比显示了许多特殊性。在这项工作中,通过分子束外延生长具有不同Sb组成的GaAs / GaAs1-XSBX / GaAs同轴单量子孔纳米线。通过依赖性和温度依赖性的光致发光测量研究带状结构和光学性质。已经发现,随着Sb组分的增加,产生更深的量子阱。由于较深的量子阱,已经实现了更有效的电子限制,仍然可以检测来自样品的发射达到室温。各种温度下峰位置和形状的不同趋势也支持样品的改善的温度稳定性。这些结果对于合金量子阱的设计是有益的,并将促进基于合金量子阱的装置的开发。

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    《RSC Advances 》 |2019年第65期| 共5页
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  • 正文语种 eng
  • 中图分类 化学 ;
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