Improved surface morphology of stacked 1.3 mu m InAs/GaAs quantum dot active regions by introducing annealing processes
Data(s) |
2006
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Resumo |
The authors report a simple but effective way to improve the surface morphology of stacked 1.3 mu m InAs/GaAs quantum dot (QD) active regions grown by metal-organic chemical vapor deposition (MOCVD), in which GaAs middle spacer and top separate confining heterostructure (SCH) layers are deposited at a low temperature of 560 degrees C to suppress postgrowth annealing effect that can blueshift emission wavelength of QDs. By introducing annealing processes just after depositing the GaAs spacer layers, the authors demonstrate that the surface morphology of the top GaAs SCH layer can be dramatically improved. For a model structure of five-layer QDs, the surface roughness with the introduced annealing processes (IAPs) is reduced to about 1.3 nm (5x5 mu m(2) area), much less than 4.2 nm without the IAPs. Furthermore, photoluminescence measurements show that inserting the annealing steps does not induce any changes in emission wavelength. This dramatic improvement in surface morphology results from the improved GaAs spacer surfaces due to the IAPs. The technique reported here has important implications for realizing stacked 1.3 mu m InAs/GaAs QD lasers based on MOCVD. |
Identificador | |
Idioma(s) |
英语 |
Fonte |
Yang T (Yang Tao); Tatebayashi J (Tatebayashi Jun); Nishioka M (Nishioka Masao); Arakawa Y (Arakawa Yasuhiko) .Improved surface morphology of stacked 1.3 mu m InAs/GaAs quantum dot active regions by introducing annealing processes ,APPLIED PHYSICS LETTERS,2006 ,89(8):Art.No.081902 |
Palavras-Chave | #光电子学 #CHEMICAL-VAPOR-DEPOSITION #THRESHOLD CURRENT #ROOM-TEMPERATURE #LASERS #MODULATION #LAYER |
Tipo |
期刊论文 |