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Reduction of Efficiency Droop and Modification of Polarization Fields of InGaN-Based Green Light-Emitting Diodes via Mg-Doping in the Barriers

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【作者】 张宁刘喆司朝任鹏王晓东冯向旭董鹏杜成孝朱绍歆付丙磊路红喜李晋闽王军喜

【Author】 ZHANG Ning;LIU Zhe;SI Zhao;REN Peng;WANG Xiao-Dong;FENG Xiang-Xu;DONG Peng;DU Cheng-Xiao;ZHU Shao-Xin;FU Bing-Lei;LU Hong-Xi;LI Jin-Min;WANG Jun-Xi;Research and Development Center for Semiconductor Lighting,Chinese Academy of Sciences;

【机构】 Research and Development Center for Semiconductor Lighting,Chinese Academy of Sciences

【摘要】 We demonstrate that the Mg-doping in barriers can partially screen the polarization fields of InGaN-based green light-emitting diodes.The photocurrent spectra show that the Mg-doping samples have smaller polarization fields and the blue shift of the peak with increasing current is observed.The reduction of polarization fields can be attributed to the screening of the impurity holes generated by the Mg atoms in the barriers.The efficiency droop is sensitive to the Mg-doping concentration in barriers,while the sample with Mg concentration of 5×1019 cm3exhibits the lowest efficiency degradation of 12.4%at a high injection current.

【Abstract】 We demonstrate that the Mg-doping in barriers can partially screen the polarization fields of InGaN-based green light-emitting diodes.The photocurrent spectra show that the Mg-doping samples have smaller polarization fields and the blue shift of the peak with increasing current is observed.The reduction of polarization fields can be attributed to the screening of the impurity holes generated by the Mg atoms in the barriers.The efficiency droop is sensitive to the Mg-doping concentration in barriers,while the sample with Mg concentration of 5×1019 cm3exhibits the lowest efficiency degradation of 12.4%at a high injection current.

【基金】 Supported by the Science and Technology Plan of the State Ministry of Science and Technology(No 2011BAE01B17)
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2013年08期
  • 【分类号】TN312.8
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