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使用扫描近场光学显微镜(SNOM)的单片半极性(20-21)发光二极管中蓝色和绿色量子阱之间的空间发光特性差异

The Differences in Spatial Luminescence Characteristics between Blue and Green Quantum Wells in Monolithic Semipolar (20-21) LEDs Using SNOM.

作者信息

Li Aixing, Li Yufeng, Song Jie, Yang Haifeng, Zhang Ye, Hu Peng, Tian Zhenhuan, Zhang Minyan, Li Qiang, Yun Feng

机构信息

Shaanxi Provincial Key Laboratory of Photonics & Information Technology, Xi'an Jiaotong University, Xi'an 710049, China.

Solid-State Lighting Engineering Research Center, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Nanomaterials (Basel). 2022 Sep 27;12(19):3386. doi: 10.3390/nano12193386.

Abstract

The differences in spatially optical properties between blue and green quantum wells (QWs) in a monolithic dual-wavelength semipolar (20-21) structure were investigated by scanning near-field optical microscopy (SNOM). The shortest wavelength for green QWs and the longest wavelength for blue QWs were both discovered in the region with the largest stress. It demonstrated that In composition, compared to stress, plays a negligible role in defining the peak wavelength for blue QWs, while for green QWs, In composition strongly affects the peak wavelength. For green QWs, significant photoluminescence enhancement was observed in the defect-free region, which was not found for blue QWs. Furthermore, the efficiency droop was aggravated in the defect-free region for green QWs but reduced for blue QWs. It indicates that carrier delocalization plays a more important role in the efficiency droop for QWs of good crystalline quality, which is experimentally pointed out for the first time.

摘要

通过扫描近场光学显微镜(SNOM)研究了单片双波长半极性(20-21)结构中蓝色和绿色量子阱(QW)在空间光学性质上的差异。绿色量子阱的最短波长和蓝色量子阱的最长波长均出现在应力最大的区域。结果表明,与应力相比,铟组分在确定蓝色量子阱的峰值波长方面作用可忽略不计,而对于绿色量子阱,铟组分强烈影响峰值波长。对于绿色量子阱,在无缺陷区域观察到显著的光致发光增强,而蓝色量子阱未观察到这种现象。此外,绿色量子阱在无缺陷区域的效率 droop 加剧,而蓝色量子阱的效率 droop 降低。这表明载流子离域在晶体质量良好的量子阱效率 droop 中起更重要作用,这是首次通过实验指出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ef3/9565590/1ad061a07f89/nanomaterials-12-03386-g001.jpg

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