Modeling of laser induced air plasma and shock wave dynamics using 2D-hydrodynamic simulations.
POSTER
Abstract
The laser induced air plasma dynamics and the SW evolution modeled using the two dimensional hydrodynamic code by considering two different EOS: ideal gas EOS with charge state effects taken into consideration and Chemical Equilibrium applications (CEA) EOS considering the chemical kinetics of different species will be presented. The inverse bremsstrahlung absorption process due to electron-ion and electron-neutrals is considered for the laser-air interaction process for both the models. The numerical results obtained with the two models were compared with that of the experimental observations over the time scales of 200 -- 4000 ns at an input laser intensity of 2.3\texttimes 10$^{\mathrm{10}}$ W/cm$^{\mathrm{2}}$. The comparison shows that the plasma and shock dynamics differ significantly for two EOS considered. With the ideas gas EOS the asymmetric expansion and the subsequent plasma dynamics have been well reproduced as observed in the experiments, whereas with the CEA model these processes were not reproduced due to the laser energy absorption occurring mostly at the focal volume.
Authors
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Prem Kiran Paturi
ACRHEM, University of Hyderabad
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Sai Shiva S
ACRHEM, University of Hyderabad
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Leela Chelikani
ACRHEM, University of Hyderabad, ICFAI Foundation for Higher Education (IFHE), Hyderabad, India
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Venkata Ramana Ikkurthi
Bhabha Atomic Research Centre, Visakhapatnam, Computational Analysis Division, Bhabha Atomic Research Centre, Visakhapatnam
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Sijoy C. D.
Bhabha Atomic Research Centre, Visakhapatnam, Computational Analysis Division, Bhabha Atomic Research Centre, Visakhapatnam
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Shashank Chaturvedi
Bhabha Atomic Research Centre, Visakhapatnam, Computational Analysis Division, Bhabha Atomic Research Centre, Visakhapatnam