Influence of GaAsP insertion layers on performance of InGaAsP/InGaP/AlGaAs quantum-well laser


Autoria(s): Cao YL (Cao Yu-Lian); Lian P (Lian Peng); Ma WQ (Ma Wen-Quan); Wang Q (Wang Qing); Wu XM (Wu Xu-Ming); He GR (He Guo-Rong); Li H (Li Hui); Wang XD (Wang Xiao-Dong); Song GF (Song Guo-Feng); Chen LH (Chen Liang-Hui)
Data(s)

2006

Resumo

We report on the use of very thin GaAsP insertion layers to improve the performance of an InGaAsP/InGaP/AlGaAs single quantum-well laser structure grown by metal organic chemical vapour deposition. Compared to the non-insertion structure, the full width at half maximum of photoluminescence spectrum of the insertion structure measured at room temperature is decreased from 47 to 38 nm indicating sharper interfaces. X-ray diffraction shows that the GaAsP insertion layers between AlGaAs and InGaP compensates for the compressive strain to improve the total interface. The laser performance of the insertion structure is significantly improved as compared with the counterpart without the insertion layers. The threshold current is decreased from 560 to 450mA while the slope efficiency is increased from 0.61 to 0.7W/A and the output power is increased from 370 to 940mW. The slope efficiency improved is very high for the devices without coated facets. The improved laser performance is attributed to the suppression of indium carry-over due to the use of the GaAsP insertion layers.

Identificador

http://ir.semi.ac.cn/handle/172111/10424

http://www.irgrid.ac.cn/handle/1471x/64407

Idioma(s)

英语

Fonte

Cao YL (Cao Yu-Lian); Lian P (Lian Peng); Ma WQ (Ma Wen-Quan); Wang Q (Wang Qing); Wu XM (Wu Xu-Ming); He GR (He Guo-Rong); Li H (Li Hui); Wang XD (Wang Xiao-Dong); Song GF (Song Guo-Feng); Chen LH (Chen Liang-Hui) .Influence of GaAsP insertion layers on performance of InGaAsP/InGaP/AlGaAs quantum-well laser ,CHINESE PHYSICS LETTERS,2006,23(9):2583-2586

Palavras-Chave #光电子学 #VAPOR-PHASE EPITAXY #DIODE-LASERS #INTERFACE CHARACTERISTICS #GROWTH SEQUENCE #MOVPE GROWTH #LP-MOVPE #HETEROSTRUCTURES #HETEROJUNCTION #POWER #NM
Tipo

期刊论文