Intersubband transitions in Al0.82In0.18N/GaN single quantum well

The influence of the width of a lattice-matched Al0.82In0.18N/GaN single quantum well (SQW) on the absorption coefficients and wavelength of the intersubband transition (ISBT) has been investigated by solving the Schrodinger and Poisson equations self-consistently. The wavelength of 1--2 ISBT increa...

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Veröffentlicht in:Chinese physics B 2011-09, Vol.20 (9), p.094207-jQuery1323921693161='48'
Hauptverfasser: Wang, Yu-Zhou (宇宙 王), Li, Ding (丁李), Li, Lei (磊李), Liu, Ning-Yang (宁炀 刘), Liu, Lei (磊刘), Cao, Wen-Yu (文彧 曹), Chen, Wei-Hua (伟华 陈), Hu, Xiao-Dong (晓东 胡)
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Sprache:eng
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Zusammenfassung:The influence of the width of a lattice-matched Al0.82In0.18N/GaN single quantum well (SQW) on the absorption coefficients and wavelength of the intersubband transition (ISBT) has been investigated by solving the Schrodinger and Poisson equations self-consistently. The wavelength of 1--2 ISBT increases with L, the thickness of the single quantum well, ranging from 2.88 Delta *mm to 3.59 Delta *mm. The absorption coefficients of 1--2 ISBT increase with L at first and then decrease with L, with a maximum when L is equal to 2.6 nm. The wavelength of 1--3 ISBT decreases with L at first and then increases with L, with a minimum when L is equal to 4 nm, ranging from approximately 2.03 Delta *mm to near 2.11 Delta *mm. The absorption coefficients of 1--3 ISBT decrease with L. The results indicate that mid-infrared can be realized by the Al0.82In0.18N/GaN SQW. In addition, the wavelength and absorption coefficients of ISBT can be adjusted by changing the width of the SQW.
ISSN:1674-1056
2058-3834
DOI:10.1088/1674-1056/20/9/094207