Title :
Nitride Nanocolumns for the Development of Light-Emitting Diode
Author :
Tang, Tsung-Yi ; Lin, Cheng-Hung ; Chen, Yung-Sheng ; Shiao, Wen-Yu ; Chang, Wen-Ming ; Liao, Che-Hao ; Shen, Kun-Ching ; Yang, Chih-Chung ; Hsu, Ming-Chi ; Yeh, Jui-Hung ; Hsu, Ta-Cheng
Author_Institution :
Inst. of Photonics & Optoelectron., Nat. Taiwan Univ., Taipei, Taiwan
Abstract :
The progress of light-emitting-diode (LED) development based on nitride nanocolumn (NC) growth, including InGaN/GaN quantum-well (QW) growth on NCs and regularly arranged GaN NC growth, is first reviewed. Then, the coalescence-overgrowth results based on patterned GaN NC growth are introduced. The overgrowth quality dependence on NC cross-sectional size and NC spacing size is discussed. Generally, a smaller NC dimension and spacing size lead to higher overgrowth quality, including lower threading dislocation (TD) density and larger lateral domain size. Next, the emission enhancement results of blue- and green-emitting InGaN/GaN QW and LED structures based on NC growth and coalescence overgrowth are presented. Significant enhancements (up to ~100% output intensity increase in a blue LED) are demonstrated. For LED applications, the TD density reduction in an overgrown GaN template can more effectively enhance the emission efficiency of a blue LED, when compared with a green LED.
Keywords :
III-V semiconductors; MOCVD coatings; dislocation density; domain boundaries; indium compounds; light emitting diodes; nanostructured materials; quantum well devices; wide band gap semiconductors; InGaN-GaN; LED; coalescence overgrowth; emission enhancement; lateral domain size; light emitting diode; lower threading dislocation density; nitride nanocolumn; quantum well growth; Chemical vapor deposition; Councils; Gallium nitride; Lattices; Leakage current; Light emitting diodes; MOCVD; Photonics; Quantum wells; Substrates; Coalescence overgrowth; light-emitting diode (LED); nitride nanocolumn (NC);
Journal_Title :
Electron Devices, IEEE Transactions on
DOI :
10.1109/TED.2009.2034795