Jeffrey M. Warrender, Ph.D.
Affiliations: | Harvard University, Cambridge, MA, United States |
Area:
Materials and Energy TechnologiesGoogle:
"Jeffrey Warrender"Mean distance: 14.21 | S | N | B | C | P |
Parents
Sign in to add mentorMichael J. Aziz | grad student | 2004 | Harvard | |
(Morphological evolution of nanocrystal metal -on -insulator films grown by pulsed laser deposition.) |
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Publications
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Lim SQ, Lew CT-, Chow PK, et al. (2020) Toward understanding and optimizing Au-hyperdoped Si infrared photodetectors Apl Materials. 8: 61109 |
Tran TT, Hudspeth Q, Liu Y, et al. (2020) Ion beam synthesis and photoluminescence study of supersaturated fully-relaxed Ge-Sn alloys Materials Science and Engineering B-Advanced Functional Solid-State Materials. 262: 114702 |
Yang W, Hudspeth Q, Chow PK, et al. (2019) Atomistic Mechanisms for the Thermal Relaxation of Au -hyperdoped Si Physical Review Applied. 12 |
Lim SQ, Lew CT, Chow PK, et al. (2019) Process-induced defects in Au-hyperdoped Si photodiodes Journal of Applied Physics. 126: 224502 |
Yang W, Ferdous N, Simpson PJ, et al. (2019) Evidence for vacancy trapping in Au-hyperdoped Si following pulsed laser melting Apl Materials. 7: 101124 |
Chow PK, Yang W, Hudspeth Q, et al. (2018) Observation of enhanced infrared absorption in silicon supersaturated with gold by pulsed laser melting of nanometer-thick gold films Journal of Applied Physics. 123: 133101 |
Liu Y, Yang W, Hudspeth Q, et al. (2017) Hyperdoped Silicon Characterization and Photodetectors Frontiers in Optics |
Warrender JM, Hudspeth Q, Chow PK. (2017) Accelerated onset of cellular breakdown at increased solidification speed after laser melting of indium in silicon Journal of Applied Physics. 121: 013103 |
Supan KE, Robert C, Miller MJ, et al. (2017) Thermal degradation of MWCNT/polypropylene nanocomposites: A comparison of TGA and laser pulse heating Polymer Degradation and Stability. 141: 41-44 |
Warrender JM, Hudspeth Q, Malladi G, et al. (2016) Incorporation of gold into silicon by thin film deposition and pulsed laser melting Applied Physics Letters. 109: 231104 |