Atomistic Modeling of Short Pulse Laser Ablation of Metals: Connections between Melting, Spallation, and Phase Explosion

被引:402
作者
Zhigilei, Leonid V. [1 ]
Lin, Zhibin [1 ]
Ivanov, Dmitriy S. [1 ]
机构
[1] Univ Virginia, Dept Mat Sci & Engn, Charlottesville, VA 22904 USA
基金
美国国家科学基金会;
关键词
CRITICAL-POINT; NANOPARTICLE GENERATION; PLASMA EXPANSION; MATERIAL REMOVAL; FEMTOSECOND; NANOSECOND; DYNAMICS; PICOSECOND; MECHANISMS; EFFICIENCY;
D O I
10.1021/jp902294m
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The mechanisms of short pulse laser interactions with a metal target are investigated in simulations performed with a model combining the molecular dynamics method with a continuum description of laser excitation, electron-phonon equilibration, and electron heat conduction. Three regimes of material response to laser irradiation are identified in simulations performed with a 1 ps laser pulse, which corresponds to the condition of stress confinement: melting and resolidification of a surface region of the target, photomechanical spllation of a single or multiple layers or droplets, and an explosive disintegration of an overheated surface layer (phase explosion). The processes of laser melting, spallation, and phase explosion are taking place on the same time scale and are closely intertwined with each other. The transition to the spallation regime results in a reduction of the melting zone and a sharp drop in the duration of the melting and resolidification cycle. The transition from spallation to phase explosion is signified by an abrupt change in the composition of the ejected plume (from liquid layers and/or large droplets to a mixture of vapor-phase atoms, small clusters and droplets), and results in a substantial increase in the duration of the melting process. In simulations performed with longer, 50 ps, laser pulses, when the condition for stress confinement is not satisfied, the spallation regime is absent and phase explosion results in smaller values of the ablation yield and larger fractions of the vapor phase in the ejected plume as compared to the results obtained with a 1 ps pulse. The more vigorous material ejection and higher ablation yields, observed in the simulations performed with the shorter laser pulse, are explained by the synergistic contribution of the laser-induced stresses and the explosive release of vapor in phase explosion occurring under the condition of stress confinement.
引用
收藏
页码:11892 / 11906
页数:15
相关论文
共 96 条
  • [1] Dynamics of plume and crater formation after action of ferntosecond laser pulse
    Agranat, M. B.
    Anisimov, S. I.
    Ashitkov, S. I.
    Zhakhovskii, V. V.
    Inogamov, N. A.
    Nishihara, K.
    Petrov, Yu. V.
    Fortov, V. E.
    Khokhov, V. A.
    [J]. APPLIED SURFACE SCIENCE, 2007, 253 (15) : 6276 - 6282
  • [2] Features of plasma plume evolution and material removal efficiency during femtosecond laser ablation of nickel in high vacuum
    Amoruso, S.
    Bruzzese, R.
    Pagano, C.
    Wang, X.
    [J]. APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 2007, 89 (04): : 1017 - 1024
  • [3] Microdrilling of metals with an inexpensive and compact ultra-short-pulse fiber amplified microchip laser
    Ancona, A.
    Nodop, D.
    Limpert, J.
    Nolte, S.
    Tuennermann, A.
    [J]. APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 2009, 94 (01): : 19 - 24
  • [4] Destruction of a solid film under the action of ultrashort laser pulse
    Anisimov, SI
    Zhakhovskii, VV
    Inogamov, NA
    Nishihara, K
    Oparin, AM
    Petrov, YV
    [J]. JETP LETTERS, 2003, 77 (11) : 606 - 610
  • [5] ANISIMOV SI, 1968, SOV PHYS JETP-USSR, V27, P182
  • [6] Anisimov SI., 1974, Sov. Phys. JETP, V39, P375, DOI DOI 10.1016/J.JMATPROTEC.2009.05.031
  • [7] [Anonymous], 1972, **DROPPED REF**
  • [8] Bauerle D., 2000, ADV TEXTS PHYS
  • [9] Thermal and fluid processes of a thin melt zone during femtosecond laser ablation of glass: the formation of rims by single laser pulses
    Ben-Yakar, Adela
    Harkin, Anthony
    Ashmore, Jacqueline
    Byer, Robert L.
    Stone, Howard A.
    [J]. JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2007, 40 (05) : 1447 - 1459
  • [10] NEAR-THRESHOLD LASER SPUTTERING OF GOLD
    BENNETT, TD
    GRIGOROPOULOS, CP
    KRAJNOVICH, DJ
    [J]. JOURNAL OF APPLIED PHYSICS, 1995, 77 (02) : 849 - 864