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Influence of a laser profile in impedance mismatch techniques applied to carbon EOS measurement
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作者 A.Aliverdiev D.Batani r.dezulian 《High Power Laser Science and Engineering》 SCIE CAS 2013年第2期102-104,共3页
We present a recent numerical analysis of impedance mismatch technique applied to carbon equation of state measurements.We consider high-power laser pulses with a Gaussian temporal profile of different durations.We sh... We present a recent numerical analysis of impedance mismatch technique applied to carbon equation of state measurements.We consider high-power laser pulses with a Gaussian temporal profile of different durations.We show that for the laser intensity(≈1014W/cm2)and the target design considered in this paper we need to have laser pulses with rise-time less than 150 ps. 展开更多
关键词 EQUATION of state(EOS) high pressures IMPEDANCE MISMATCH technique
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Shock dynamics and shock collision in foam layered targets
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作者 K.Batani A.Aliverdiev +8 位作者 R.Benocci r.dezulian A.Amirova E.Krousky M.Pfeifer J.Skala R.Dudzak W.Nazarov D.Batani 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2021年第3期101-114,共14页
We present an experimental study of the dynamics of shocks generated by the interaction of a double-spot laser in different kinds of targets:simple aluminum foils and foam-aluminum layered targets.The experiment was p... We present an experimental study of the dynamics of shocks generated by the interaction of a double-spot laser in different kinds of targets:simple aluminum foils and foam-aluminum layered targets.The experiment was performed using the Prague PALS iodine laser working at 0.44μm wavelength and irradiance of a few 10^(15)W/cm^(2).Shock breakouts for pure Al and for foam-Al targets have been recorded using time-resolved self-emission diagnostics.Experimental results have been compared with numerical simulations.The shocks originating from two spots move forward and expand radially in the targets,finally colliding in the intermediate region and producing a very strong increase in pressure.This is particularly clear for the case of foam layered targets,where we also observed a delay of shock breakout and a spatial redistribution of the pressure.The influence of the foam layer doped with high-Z(Au)nanoparticles on the shock dynamics was also studied. 展开更多
关键词 foam hydrodynamics simulations self-emission diagnostics shock chronometry shock collision
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