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Quantum Well Infrared Photodetectors (QWIP)There has been a lot of interest in III-V long wavelength detectors in the lambda = 8 to 12 micron spectral range as alternatives to HgCdTe. Recently high performance quantum well infrared photodetectors (QWIP) have been demonstrated. They have a responsivity of R = 1.2 A/W, and a detectivity D(exp asterisk) sub lambda = 2 times 10(exp 10) cm Hz(exp 1/2)/W at 68 K for a QWIP with a cutoff wavelength of lambda sub c = 10.7 micron and a R = 1.0 A/W, and D(exp asterisk) sub lambda = 2 times 10(exp 10) cm Hz(exp 1/2)/W at T = 77 K for lambda sub c = 8.4 micron. These detectors consist of 50 periods of molecular beam epitaxy (MBE) grown layers doped n = 1 times 10(exp 18)cm(exp -3) having GaAs quantum well widths of 40 A and barrier widths of 500 A of Al sub x Ga sub 1-x As. Due to the well-established GaAs growth and processing techniques, these detectors have the potential for large, highly uniform, low cost, high performance arrays as well as monolithic integration with GaAs electronics, high speed and radiation hardness. Latest results on the transport physics, device performance and arrays are discussed.
Document ID
19910005079
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Levine, B. F.
(Bell Telephone Labs., Inc. Murray Hill, NJ, United States)
Date Acquired
September 6, 2013
Publication Date
July 1, 1990
Publication Information
Publication: JPL, California Inst. of Tech., Innovative Long Wavelength Infrared Detector Workshop Proceedings
Subject Category
Spacecraft Instrumentation
Accession Number
91N14392
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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