Ultrafast carrier dynamics in GaN/InGaN multiple quantum wells nanorods

被引:0
|
作者
Chen, Weijian [1 ]
Wen, Xiaoming [2 ]
Latzel, Michael [3 ,4 ]
Yang, Jianfeng [1 ]
Huang, Shujuan [1 ]
Shrestha, Santosh [1 ]
Patterson, Robert [1 ]
Christiansen, Silke [3 ,5 ,6 ]
Conibeer, Gavin [1 ]
机构
[1] UNSW Australia, Sch Photovolta & Renewable Energy Engn, Australian Ctr Adv Photovolta, Sydney, NSW 2052, Australia
[2] Swinburne Univ Technol, Ctr Microphoton, Melbourne, Vic 3122, Australia
[3] Max Planck Inst Sci Light, Gunther Scharowsky Staudtstr 2, D-91058 Erlangen, Germany
[4] Friedrich Alexander Univ Erlangen Nurnberg FAU, Inst Opt Informat & Photon, Staudtstr 7-B2, D-91058 Erlangen, Germany
[5] Helmholtz Zentrum Berlin Mat & Energie GmbH, Inst Nanoarchitectures Energy Convers, Hahn Meitner Pl 1, D-14109 Berlin, Germany
[6] Free Univ Berlin, Dept Phys, Arnimallee 14, D-14195 Berlin, Germany
来源
关键词
Ultrafast carrier dynamics; multiple quantum wells; GaN; transient absorption; nanorod; INGAN/GAN; NANOWIRES;
D O I
10.1117/12.2283328
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
GaN/InGaN multiple quantum wells (MQW) is a promising material for high-efficiency solid-state lighting. Ultrafast optical pump-probe spectroscopy is an important characterization technique for examining fundamental phenomena in semiconductor nanostructure with sub-picosecond resolution. In this study, ultrafast exciton and charge carrier dynamics in GaN/InGaN MQW planar layer and nanorod are investigated using femtosecond transient absorption (TA) techniques at room temperature. Here nanorods are fabricated by etching the GaN/InGaN MQW planar layers using nanosphere lithography and reactive ion etching. Photoluminescence efficiency of the nanorods have been proved to be much higher than that of the planar layers, but the mechanism of the nanorod structure improvement of PL efficiency is not adequately studied. By comparing the TA profile of the GaN/InGaN MQW planar layers and nanorods, the impact of surface states and nanorods lateral confinement in the ultrafast carrier dynamics of GaN/InGaN MQW is revealed. The nanorod sidewall surface states have a strong influence on the InGaN quantum well carrier dynamics. The ultrafast relaxation processes studied in this GaN/InGaN MQW nanostructure is essential for further optimization of device application.
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页数:6
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