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不同尺寸分布的自组织In_(0.55)Al_(0.45)As/Al_(0.5)Ga_(0.5)As量子点的静压光谱
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作者 陈晔 张旺 +4 位作者 李国华 韩和相 汪兆平 周伟 王占国 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2000年第11期1092-1098,共7页
在 1 5K测量了不同尺寸分布的 In0 .55Al0 .4 5As/Al0 .5Ga0 .5As量子点的静压光致发光 ,静压范围为 0 - 1 .3GPa.常压下观察到三个发光峰 ,分别来源于不同尺寸的量子点 (横向直径分别为2 6、52和 62 nm)的发光 .它们的压力系数分别为 8... 在 1 5K测量了不同尺寸分布的 In0 .55Al0 .4 5As/Al0 .5Ga0 .5As量子点的静压光致发光 ,静压范围为 0 - 1 .3GPa.常压下观察到三个发光峰 ,分别来源于不同尺寸的量子点 (横向直径分别为2 6、52和 62 nm)的发光 .它们的压力系数分别为 82、94和 98me V/GPa,都小于 In0 .55Al0 .4 5As体材料带边的压力系数 ,特别是尺寸为 2 6nm的小量子点比 In0 .55Al0 .4 5As体材料带边小 1 7% ,并且压力系数随量子点尺寸的变小而减小 .理论计算表明有效质量的增大和 Γ- X混合是量子点压力系数变小的主要原因 ,并得到横向直径为 2 6和 52 nm的小量子点的 Γ- X混合势为 1 5和1 0 me V.根据实验还确定 In0 .55Al0 .4 5As/Al0 .5Ga0 .5As量子点系统 X能带具有 类结构 ,并且估算出价带不连续量为 0 .1 5± 0 .0 展开更多
关键词 algaas INalAS 量子点 光致发光 静压光谱
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First-principles study of stability of point defects and their effects on electronic properties of GaAs/AlGaAs superlattice
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作者 冯山 姜明 +5 位作者 邱启航 彭祥花 肖海燕 刘子江 祖小涛 乔梁 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第3期434-443,共10页
When the GaAs/AlGaAs superlattice-based devices are used under irradiation environments, point defects may be created and ultimately deteriorate their electronic and transport properties. Thus, understanding the prope... When the GaAs/AlGaAs superlattice-based devices are used under irradiation environments, point defects may be created and ultimately deteriorate their electronic and transport properties. Thus, understanding the properties of point defects like vacancies and interstitials is essential for the successful application of semiconductor materials. In the present study, first-principles calculations are carried out to explore the stability of point defects in GaAs/Al_(0.5)Ga_(0.5)As superlattice and their effects on electronic properties. The results show that the interstitial defects and Frenkel pair defects are relatively difficult to form, while the antisite defects are favorably created generally. Besides, the existence of point defects generally modifies the electronic structure of GaAs/Al_(0.5)Ga_(0.5)As superlattice significantly, and most of the defective SL structures possess metallic characteristics. Considering the stability of point defects and carrier mobility of defective states,we propose an effective strategy that AlAs, GaAs, and AlGaantisite defects are introduced to improve the hole or electron mobility of GaAs/Al_(0.5)Ga_(0.5)As superlattice. The obtained results will contribute to the understanding of the radiation damage effects of the GaAs/AlGaAs superlattice, and provide a guidance for designing highly stable and durable semiconductor superlattice-based electronics and optoelectronics for extreme environment applications. 展开更多
关键词 first-principles calculations gaas/al_(0.5)ga_(0.5)As superlattice point defects electronic properties
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