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Variation of efficiency droop with quantum well thickness in In GaN/GaN green light-emitting diode
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作者 刘炜 赵德刚 +7 位作者 江德生 陈平 刘宗顺 朱建军 李翔 梁锋 刘建平 杨辉 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第12期572-577,共6页
In GaN/GaN multiple quantum well(MQW) green light-emitting diodes(LEDs) with varying In GaN quantum well layer thickness are fabricated and characterized. The investigation of luminescence efficiency versus inject... In GaN/GaN multiple quantum well(MQW) green light-emitting diodes(LEDs) with varying In GaN quantum well layer thickness are fabricated and characterized. The investigation of luminescence efficiency versus injection current reveals that several physical mechanisms may jointly influence the efficiency droop, resulting in a non-monotonic variation of droop behavior with increasing quantum well(QW) thickness. When the QW is very thin, the increase of In GaN well layer thickness makes the efficiency droop more serious due to the enhancement of polarization effect. When the QW thickness increases further, however, the droop is alleviated significantly, which is mainly ascribed to the enhanced nonradiative recombination process and the weak delocalization effect. 展开更多
关键词 InGaN/GaN multiple quantum wells light-emitting diode efficiency droop well thickness
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Analysis of localization effect in blue-violet light emitting InGaN/GaN multiple quantum wells with different well widths
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作者 Xiang Li De-Gang Zhao +15 位作者 De-Sheng Jiang Jing Yang Ping Chen Zong-Shun Liu Jian-Jun Zhu Wei Liu Xiao-Guang He Xiao-Jing Li Feng Liang Jian-Ping Liu Li-Qun Zhang Hui Yang Yuan-Tao Zhang Guo-Tong Du Heng Long Mo Li 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第1期498-502,共5页
Four blue-violet light emitting InGaN/GaN multiple quantum well(MQW) structures with different well widths are grown by metal–organic chemical vapor deposition. The carrier localization effect in these samples is i... Four blue-violet light emitting InGaN/GaN multiple quantum well(MQW) structures with different well widths are grown by metal–organic chemical vapor deposition. The carrier localization effect in these samples is investigated mainly by temperature-dependent photoluminescence measurements. It is found that the localization effect is enhanced as the well width increases from 1.8 nm to 3.6 nm in our experiments. The temperature induced PL peak blueshift and linewidth variation increase with increasing well width, implying that a greater amplitude of potential fluctuation as well as more localization states exist in wider wells. In addition, it is noted that the broadening of the PL spectra always occurs mainly on the low-energy side of the PL spectra due to the temperature-induced band-gap shrinkage, while in the case of the widest well, a large extension of the spectral curve also occurs in the high energy sides due to the existence of more shallow localized centers. 展开更多
关键词 InGaN/GaN multiple quantum wells localization effect well thickness
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Negative Phase Time Effectin Potential-Well Passing
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作者 Chun-fang Li Qi Wang 《Advances in Manufacturing》 2000年第3期210-213,共4页
The properties of phase time taken for particles to pass through a quantum potential well are investigated. It is found in a 1 dimensional quantum mechanical problem that the phase time is negative when the incident e... The properties of phase time taken for particles to pass through a quantum potential well are investigated. It is found in a 1 dimensional quantum mechanical problem that the phase time is negative when the incident energy and the thickness of potential well satisfy certain conditions. Similar results are also found in a 2 dimensional fully relativistic optical analog. It is shown that the expression of the la teral shift of transmitted optical waves is similar to that of the phase time in the 1 dimensional quantum mechanical problem. The phase time in the 2 dimensional optical problem is also shown to be negative under certain conditions. 展开更多
关键词 negative phase time negative lateral shift potential well quantum like dependence of phase on potential well thickness
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