C
Explosive change in crater properties during high power nanosecond laser ablation of silicon." Journal of Applied Physics 88.3 (2000) 1638–1649.
, , , and . "Evidence for phase-explosion and generation of large particles during high power nanosecond laser ablation of silicon." Applied Physics Letters 76.6 (2000) 783–785.
, , , , and . "Monitoring laser-energy coupling to solid materials: Plasma-shielding and phase change." Materials Science and Engineering B-Solid State Materials for Advanced Technology 45 (1997) 172–179.
, , and . "Laser-Induced Stresses Versus Mechanical-Stress Power Measurements During Laser-Ablation of Solids." Applied Physics Letters 67 (1995) 3227–3229.
, and . "Imaging femtosecond laser-induced electronic excitation in glass." Applied Physics Letters 82.5 (2003) 697–699.
, , and . "Laser ablation processes investigated using inductively coupled plasma atomic emission spectroscopy (ICP-AES)." Applied Surface Science 129 (1998) 262–268.
, , , and . "Influence of preformed shock wave on the development of picosecond laser ablation plasma." Journal of Applied Physics 89.7 (2001) 4096–4098.
, , , and . "Simulation of a picosecond laser ablation plasma." Applied Physics Letters 76.23 (2000) 3370–3372.
, , , and . "Dynamics of an air breakdown plasma on a solid surface during picosecond laser ablation." Applied Physics Letters 76 (2000) 31–33.
, , , and . "Simulation of infrared picosecond laser-induced electron emission from semiconductors." Applied Surface Science 129 (1998) 206–211.
, , , and . "Pagination
- Page 1
- Next page