Fingerprint Dive into the research topics where Center for Quantum Devices (CQD) is active. These topic labels come from the works of this organization's members. Together they form a unique fingerprint.

quantum cascade lasers Physics & Astronomy
Quantum cascade lasers Engineering & Materials Science
continuous radiation Physics & Astronomy
wavelengths Physics & Astronomy
room temperature Physics & Astronomy
photometers Physics & Astronomy
Wavelength Engineering & Materials Science
Photodetectors Engineering & Materials Science

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Profiles

No photo of Arash Dehzangi
20112019
No photo of Quanyong Lu
20042019

Research Output 1994 2019

Antimonite-based gap-engineered type-II superlattice materials grown by MBE and MOCVD for the third generation of infrared imagers

Razeghi, M., Dehzangi, A., Wu, D., McClintock, R. P., Zhang, Y., Durlin, Q., Li, J. & Meng, F., Jan 1 2019, Infrared Technology and Applications XLV. Andresen, B. F., Fulop, G. F. & Hanson, C. M. (eds.). SPIE, 110020G. (Proceedings of SPIE - The International Society for Optical Engineering; vol. 11002).

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Organic Chemicals
Epitaxy
Superlattices
Chemical Vapor Deposition
Organic chemicals
Open Access
metalorganic chemical vapor deposition
photometers
wavelengths
dark current
quantum efficiency

Extended short wavelength infrared heterojunction phototransistors based on type II superlattices

Dehzangi, A., McClintock, R. P., Wu, D., Haddadi, A., Chevallier, R. & Razeghi, M., May 13 2019, In : Applied Physics Letters. 114, 19, 191109.

Research output: Contribution to journalArticle

phototransistors
superlattices
heterojunctions
dark current
wavelengths

Grants 2007 2021

focal plane devices
metalorganic chemical vapor deposition
superlattices
format
molecular beam epitaxy
Students
Power electronics
Supply chains
Industry
Energy gap
infrared lasers
chemical detection
tuning
broadband
chips