Theoretical modelling of MWIR thermoelectrically cooled nBn HgCdTe detector
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[1] P. Norton. HgCdTe Infrared Detectors , 2002 .
[2] Antoni Rogalski,et al. InAs/GaInSb superlattices as a promising material system for third generation infrared detectors , 2005, Other Conferences.
[3] Antoni Rogalski,et al. HgCdTe infrared detector material: history, status and outlook , 2005 .
[4] G. Wicks,et al. nBn detector, an infrared detector with reduced dark current and higher operating temperature , 2006 .
[5] H. S. Kim,et al. nBn structure based on InAs /GaSb type-II strained layer superlattices , 2007 .
[6] P. Martyniuk,et al. Comparison of performance of quantum dot and other types of infrared photodetectors , 2008, SPIE Defense + Commercial Sensing.
[7] Philip Klipstein,et al. "XBn" barrier photodetectors for high sensitivity and high operating temperature infrared sensors , 2008, SPIE Defense + Commercial Sensing.
[8] A. Rogalski,et al. Insight into performance of quantum dot infrared photodetectors , 2009 .
[9] Alexander Soibel,et al. Antimonide-based barrier infrared detectors , 2010, Defense + Commercial Sensing.
[10] A. Rogalski. Infrared Detectors, Second Edition , 2010 .
[11] Alexander Soibel,et al. Growth and performance of superlattice-based long wavelength complementary barrier infrared detectors (CBIRDs) , 2010, Defense + Commercial Sensing.
[12] Jamie D. Phillips,et al. Design and Modeling of HgCdTe nBn Detectors , 2011 .
[13] Alexander Soibel,et al. Type-II Superlattice Infrared Detectors , 2011 .
[14] Antoni Rogalski,et al. Narrow-Gap Semiconductors for Infrared Detectors , 2011 .
[15] Elena Plis,et al. Dark current modeling of MWIR type-II superlattice detectors , 2012, Defense + Commercial Sensing.
[16] Elena Plis,et al. Performance modeling of MWIR InAs/GaSb/B–Al0.2Ga0.8Sb type-II superlattice nBn detector , 2012 .
[17] Silviu Velicu,et al. Theoretical and experimental investigation of MWIR HgCdTe nBn detectors , 2012, OPTO.