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具有硅掺杂渐变短周期超晶格的InGaN/GaN绿光发光二极管的发光特性

Luminescence Properties of InGaN/GaN Green Light-Emitting Diodes with Si-Doped Graded Short-Period Superlattice.

作者信息

Cho Ll-Wook, Lee Bom, Lee Kwanjae, Kim Jin Soo, Ryu Mee-Yi

机构信息

Department of Physics, Kangwon National University, Chuncheon 24341, Republic of Korea.

Department of Physics, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Republic of Korea.

出版信息

J Nanosci Nanotechnol. 2021 Nov 1;21(11):5648-5652. doi: 10.1166/jnn.2021.19460.

Abstract

The optical properties of InGaN/GaN green light-emitting diodes (LEDs) with an undoped graded short-period superlattice (GSL) and a Si-doped GSL (SiGSL) were investigated using photoluminescence (PL) and time-resolved PL spectroscopies. For comparison, an InGaN/GaN conventional LED (CLED) without the GSL structure was also grown. The SiGSL sample showed the strongest PL intensity and the largest PL peak energy because of band-filling effect and weakened quantum- confined stark effect (QCSE). PL decay time of SiGSL sample at 10 K was shorter than those of the CLED and GSL samples. This finding was attributed to the oscillator strength enhancement by the reduced QCSE due to the Coulomb screening by Si donors. In addition, the SiGSL sample exhibited the longest decay time at 300 K, which was ascribed to the reduced defect and dislocation density. These results indicate that insertion of the Si-doped GSL structure is an effective strategy for improving the optical properties in InGaN/GaN green LEDs.

摘要

利用光致发光(PL)和时间分辨PL光谱研究了具有未掺杂渐变短周期超晶格(GSL)和硅掺杂GSL(SiGSL)的InGaN/GaN绿色发光二极管(LED)的光学特性。为作比较,还生长了无GSL结构的InGaN/GaN传统LED(CLED)。由于能带填充效应和量子限制斯塔克效应(QCSE)减弱,SiGSL样品显示出最强的PL强度和最大的PL峰值能量。SiGSL样品在10 K时的PL衰减时间比CLED和GSL样品的短。这一发现归因于由于硅施主的库仑屏蔽导致QCSE降低,从而增强了振子强度。此外,SiGSL样品在300 K时表现出最长的衰减时间,这归因于缺陷和位错密度的降低。这些结果表明,插入硅掺杂GSL结构是改善InGaN/GaN绿色LED光学特性的有效策略。

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