Centre for Excellence in Basic Sciences, University of Mumbai, Mumbai 40098, India.
Bhabha Atomic Research Centre, Trombay, Mumbai 40085, India.
Phys Rev E. 2016 Feb;93(2):023203. doi: 10.1103/PhysRevE.93.023203. Epub 2016 Feb 16.
Dynamics of electron heating in the radiation-pressure-driven acceleration through self-induced transparency (SIT) is investigated with the help of particle-in-cell simulations. The SIT is achieved through laser filamentation which is seeded by the transverse density modulations due to the Rayleigh-Taylor-like instability. We observe stronger SIT induced electron heating for the longer duration laser pulses leading to deterioration of accelerated ion beam quality (mainly energy spread). Such heating can be controlled to obtain a quasimonoenergetic beam by cascaded foils targets where a second foil behind the main accelerating foil acts as a laser reflector to suppress the SIT.
利用粒子模拟研究了在自诱导透明(SIT)驱动的辐射压力加速过程中电子加热的动力学。SIT 是通过激光细丝化实现的,激光细丝化是由瑞利-泰勒型不稳定性引起的横向密度调制产生的。我们观察到,对于持续时间较长的激光脉冲,SIT 诱导的电子加热更强,从而导致加速离子束质量恶化(主要是能散度)。通过级联箔靶可以控制这种加热,从而获得准单能束,其中主加速箔后面的第二箔作为激光反射器抑制 SIT。