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Near-infrared intersubband transitions in InGaAs–AlAs–InAlAs double quantum wells

Authors :
Semtsiv, M.
Ziegler, M.
Masselink, W. T.
Georgiev, N.
Dekorsy, T.
Helm, M.
Semtsiv, M.
Ziegler, M.
Masselink, W. T.
Georgiev, N.
Dekorsy, T.
Helm, M.
Source :
Journal of Applied Physics 97(2005), 113538
Publication Year :
2005

Abstract

Intersubband optical transitions at short wavelengths in strain-compensated In0.70Ga0.30As—AlAs double quantum wells are investigated by means of mid-infrared absorption. Trade-offs between achieving a high transition energy and a large oscillator strength of the two highest-energy intersubband transitions using our strain-compensation approach are analyzed as a function of the widths of the two wells. Two design strategies leading to relatively strong intersubband optical transitions at 800 meV, 1.55 µm, are described and the corresponding structures grown using gas-source molecular-beam epitaxy on (001)InP are investigated. The strongest intersubband transitions obtained experimentally are generally between 300 and 600 meV, 2–4 µm. Significant oscillator strength, however, also extends out to 800 meV, 1.55 µm.

Details

Database :
OAIster
Journal :
Journal of Applied Physics 97(2005), 113538
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1415618594
Document Type :
Electronic Resource