Title of article :
Modeling of plume dynamics with shielding in laser ablation of carbon
Author/Authors :
Kedar Pathak، نويسنده , , Alex Povitsky، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Abstract :
The process of laser ablation of carbon in presence of background gas is simulated numerically. The plume dynamics in laser ablation is
important to study for many reasons including temperature of plume particles and shielding of target by previously ablated plumes. Shielding leads
directly to the change in energy deposition of incident laser pulse at the target surface and in turn influences the ablation dynamics and amount of
material removed. Carbon ablation is studied for single and multiple laser hits typical for synthesis of nanotubes. Two models of correction of
ablated velocity and pressure resulting from shielding effect are proposed and investigated. Numerical modeling of this plume dynamics and its
integral effect of shielding is challenging due to inherent high nonlinearity of the problem. Some of available numerical techniques handles
nonlinearity but are dissipative, e.g. Godunov type schemes. Other techniques are less dissipative but fail to account for strong nonlinearity typical
for initial stages of ablation, e.g. the ENO-Roe. To effectively model this highly nonlinear plume dynamics a combination of two of above
mentioned schemes is developed so as the numerical evaluation of fluxes is close to their physical values and the scheme has minimum dissipation.
The non-monotonic behavior of ablated mass as a function of time duration between two laser pulses is studied.
Keywords :
Godunov numerical scheme , Multiple plumes , ENO-Roe numerical scheme , Shieldingeffect , Vorticity dynamics , CFD , Laser ablation , Carbon ablation
Journal title :
Applied Surface Science
Journal title :
Applied Surface Science