Solids
Thermal Resistance of Nano Constrictions." ASME 2006 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2006. 535–540.
, , and . "Laser-Induced Stresses Versus Mechanical-Stress Power Measurements During Laser-Ablation of Solids." Applied Physics Letters 67 (1995) 3227–3229.
, 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 . "Photothermal deflection measurements for monitoring heat-transfer during modulated laser-heating of solids." J.Appl.Phys. 71 (1992) 53.
, , 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 . "Initiation of an early-stage plasma during picosecond laser ablation of solids." Applied Physics Letters 77.16 (2000) 2464–2466.
, , , and . "Direct chemical analysis of solids by laser ablation in an Ion storage time-of-flight mass spectrometer." Analytical Chemistry 76.5 (2004) 1249–1256.
, , , and . "Double-pulse laser ablation inductively coupled plasma mass spectrometry." Spectrochimica Acta Part B-Atomic Spectroscopy 60 (2005) 27–31.
, , , , and . "Laser ablation inductively coupled plasma mass spectrometry of pressed pellet surrogates for Pu materials disposition." Applied Spectroscopy 55 (2001) 1304–1311.
, , and . "