Sanjay Krishna
Affiliations: | Electrical & Computer Engineering | University of New Mexico, Albuquerque, NM, United States |
Area:
Infrared imagingWebsite:
http://www.ece.unm.edu/faculty-staff/electrical-and-computer/sanjay-krishna.htmlGoogle:
"Sanjay Krishna"Mean distance: 13.24
Parents
Sign in to add mentorPallab K. Bhattacharya | grad student | 2001 | University of Michigan | |
(Study of quantum confined energy levels in self-organized indium(gallium,aluminum)arsenide/(gallium,aluminum)arsenide quantum dots and their application to mid-infrared sources and detectors.) |
Children
Sign in to add traineeMario A. Serna | grad student | 2003 | Univ. of New Mexico |
Gregory von Winckel | grad student | 2006 | Univ. of New Mexico |
Ram S. Attaluri | grad student | 2007 | Univ. of New Mexico |
Frederick D. Newman | grad student | 2007 | Univ. of New Mexico |
Jonathan R. Andrews | grad student | 2008 | Univ. of New Mexico |
Christopher C. Wilcox | grad student | 2009 | Univ. of New Mexico |
Arezou Khoshakhlagh | grad student | 2010 | Univ. of New Mexico |
Ha S. Kim | grad student | 2010 | Univ. of New Mexico |
Rajeev V. Shenoi | grad student | 2010 | Univ. of New Mexico |
Jiayi Shao | grad student | 2011 | Univ. of New Mexico |
Ajit V. Barve | grad student | 2012 | Univ. of New Mexico |
Nutan Gautam | grad student | 2012 | Univ. of New Mexico |
Woo-Yong Jang | grad student | 2012 | Univ. of New Mexico |
David A. Ramirez | grad student | 2012 | Univ. of New Mexico |
Brianna Klein | grad student | 2014 | Univ. of New Mexico |
Freddie Santiago | grad student | 2014 | Univ. of New Mexico |
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Publications
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Lee SC, Kang JH, Park Q, et al. (2020) Quantum efficiency of plasmonic-coupled quantum dot infrared photodetectors for single- color detection: the upper limit of plasmonic enhancement. Optics Express. 28: 7618-7633 |
Braga OM, Delfino CA, Kawabata RMS, et al. (2020) Surface Passivation of InGaAs/InP p-i-n Photodiodes Using Epitaxial Regrowth of InP Ieee Sensors Journal. 20: 9234-9244 |
Casias LK, Morath CP, Steenbergen EH, et al. (2020) Vertical carrier transport in strain-balanced InAs/InAsSb type-II superlattice material Applied Physics Letters. 116: 182109 |
Taghipour Z, Rogers V, Ringel B, et al. (2020) Photoluminescence spectroscopy of metamorphic InAsSb on GaAs and Si Journal of Luminescence. 228: 117581 |
Rogers V, Deitz JI, Blumer A, et al. (2020) InAs1−ySby virtual substrates grown by MOCVD for long wave infrared detectors Journal of Crystal Growth. 535: 125552 |
Dev S, Wang Y, Kim K, et al. (2019) Measurement of carrier lifetime in micron-scaled materials using resonant microwave circuits. Nature Communications. 10: 1625 |
Foteinopoulou S, Devarapu GCR, Subramania GS, et al. (2019) Phonon-polaritonics: enabling powerful capabilities for infrared photonics Nanophotonics. 8: 2129-2175 |
Taghipour Z, Lee S, Myers S, et al. (2019) Temperature-Dependent Minority-Carrier Mobility in p -Type InAs / GaSb Type-II-Superlattice Photodetectors Physical Review Applied. 11 |
Han IS, Kim JS, Shin JC, et al. (2019) Photoluminescence study of InAs/InGaAs sub-monolayer quantum dot infrared photodetectors with various numbers of multiple stack layers Journal of Luminescence. 207: 512-519 |
Casias LK, Morath CP, Steenbergen EH, et al. (2019) Carrier concentration and transport in Be-doped InAsSb for infrared sensing applications Infrared Physics & Technology. 96: 184-191 |