Mechanisms of small clusters production by short and ultra-short laser ablation
نویسندگان
چکیده
The mechanisms involved into the formation of clusters by pulsed laser ablation are studied both numerically and experimentally. To facilitate the model validation by comparison with experimental results, the time and length scales of the simulation are considerably increased. This increase is achieved by using a combination of molecular dynamics (MD) and the direct simulation Monte Carlo (DSMC) methods. The combined MD–DSMC model is then used to compare the relative contribution of the two channels of the cluster production by laser ablation: (i) direct cluster ejection upon the laser-material interaction, and (ii) collisional sticking and aggregation in the ablated gas flow. Calculation results demonstrate that both of these mechanisms play a role. The initial cluster ejection provides cluster precursors thus eliminating the three-body collision bottleneck in the cluster growth process. The presence of clusters thus facilitates the following collisional condensation and evaporation processes. The rates of these processes become considerable, leading to the modification of not only the plume cluster composition, but also the dynamics of the plume expansion. Calculation results explain several recent experimental findings. # 2007 Elsevier B.V. All rights reserved. PACS : 52.38Mf; 02.60.Cb
منابع مشابه
Nonlocal thermoelastic semi-infinite medium with variable thermal conductivity due to a laser short-pulse
In this article, the thermoelastic interactions in an isotropic and homogeneous semi-infinite medium with variable thermal conductivity caused by an ultra-short pulsed laser heating based on the linear nonlocal theory of elasticity has been considered. We consider that the thermal conductivity of the material is dependent on the temperature. The surface of the surrounding plane of the medium is...
متن کاملThermal Processing of Thin Films Using Ultra-short Laser Pulses Applied to Photovoltaic Materials
Ultra-short pulsed laser sources, with pulse durations in the ps and fs regime, arecommonly exploited for cold ablation. However, operating ultra-short pulsed lasersources at fluence levels well below the ablation threshold allows for fast and selectivethermal processing. The latter is especially advantageous for the processing of thinfilms. A precise control of the heat affecte...
متن کاملResidual Heat in Ultra-Short Pulsed Laser Ablation of Metals
In ultra-short pulsed laser ablation of metals, a considerable amount of the incident laser energy remains in the workpiece as residual heat. When using high repetition rates, this can cause severe damage due to heat accumulation effects. In this paper, the amount and the spatial distribution of the residual heat deposited by a spatially Gaussian-shaped laser pulse are investigated by means of ...
متن کاملMechanisms of nanoparticle formation by ultra-short laser ablation of metals in liquid environment.
Laser ablation in liquids is now commonly used to produce colloidal nanoparticles (NPs) that have found numerous applications in different areas. In experiments, NPs of different materials can be rather easily obtained by using laser systems with various pulse durations, shapes, wavelengths, and fluences. In this paper, we focus our attention on metal (gold) NPs produced by ultra-short laser pu...
متن کاملUV-laser ablation of polyimide: from long to ultra-short laser pulses
Physical mechanisms of UV-laser ablation of polyimide (Kapton H) are discussed for different laser pulse duration from long (p,s) to ultra-short (ps) laser pulses. Theoretical analysis of experimental data suggests that with long laser pulses the mechanism appears to be thermal. The activation energies for ablation are about 1.5 eV, and typical temperatures lie in the range 1400-1800 K. With ns...
متن کامل