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Volumn 2714, Issue , 1996, Pages 650-659
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Theoretical model for laser energy deposition in intrinsic optical materials and thermomechanical effects
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Author keywords
Dielectric materials; Energy deposition; Laser damage; Non linear absorption; Thermomechanical effects
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Indexed keywords
ABSORPTION;
AVALANCHES (SNOWSLIDES);
BOLTZMANN EQUATION;
CIVIL AVIATION;
FLUID DYNAMICS;
IRRADIATION;
LASER BEAMS;
LASER DAMAGE;
LASER THEORY;
LASERS;
MULTIPHOTON PROCESSES;
OPTICAL MATERIALS;
PHOTOIONIZATION;
PLASMA DENSITY;
PULSE GENERATORS;
PULSED LASER APPLICATIONS;
SILICON COMPOUNDS;
SNOW;
THEOREM PROVING;
THERMOMECHANICAL TREATMENT;
ULTRASHORT PULSES;
AVALANCHE MULTIPLICATIONS;
BOLTZMANN TRANSPORTS;
CARRIER GENERATIONS;
ENERGY DEPOSITION;
FREE CARRIERS;
FREE ELECTRONS;
HYDRODYNAMIC CODES;
INTENSITY PROFILES;
INTRINSIC PROCESSES;
LAGRANGIAN;
LASER ENERGY DEPOSITIONS;
LASER IRRADIATIONS;
LONG PULSES;
MICROSCOPIC THEORIES;
MONTE CARLO INTEGRATIONS;
MULTIPHOTON IONIZATIONS;
NEAR INFRARED;
NON LINEAR ABSORPTION;
PULSE WIDTHS;
STRESS EVOLUTIONS;
THEORETICAL MODELS;
THERMOMECHANICAL EFFECTS;
THIN LAYERS;
TIME DOMAINS;
TIME ENERGIES;
TRANSMITTED PULSES;
ULTRASHORT LASER PULSES;
DIELECTRIC MATERIALS;
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EID: 0001313081
PISSN: 0277786X
EISSN: None
Source Type: Conference Proceeding
DOI: 10.1117/12.240362 Document Type: Conference Paper |
Times cited : (12)
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References (18)
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