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Volumn 183, Issue 2, 2012, Pages 278-284
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A hybrid method for integrated atomistic-continuum simulation of ultrashort-pulsed laser interaction with semiconductors
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Author keywords
Combined atomistic continuum modeling; Finite difference; Molecular dynamics; Semiconductors; Ultrafast laser
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Indexed keywords
CARRIER TEMPERATURE;
DAMPING FORCES;
ENERGY TRANSFER MODELS;
FEMTO-SECOND LASER;
FINITE DIFFERENCE;
FINITE DIFFERENCE SCHEME;
FINITE-DIFFERENCE ALGORITHMS;
HEAT EXCHANGE;
HYBRID METHOD;
LASER ENERGY DISTRIBUTION;
SEMI-IMPLICIT;
THERMAL TRANSPORT;
THIN SILICON FILMS;
ULTRA-FAST;
ULTRASHORT-PULSED LASER;
COMPUTER SIMULATION;
CONTINUUM MECHANICS;
DYNAMICS;
ENERGY TRANSFER;
EQUATIONS OF MOTION;
LASER HEATING;
MOLECULAR DYNAMICS;
NUMERICAL METHODS;
SEMICONDUCTOR LASERS;
SEMICONDUCTOR MATERIALS;
ULTRAFAST LASERS;
PULSED LASERS;
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EID: 81455141233
PISSN: 00104655
EISSN: None
Source Type: Journal
DOI: 10.1016/j.cpc.2011.10.002 Document Type: Article |
Times cited : (18)
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References (18)
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