论文标题
通过相对论激光驱动的微管内爆的磁场扩增中的符号逆转
Sign reversal in magnetic field amplification by relativistic laser-driven microtube implosions
论文作者
论文摘要
我们通过激光驱动的结构化靶标在磁场扩增中符号逆转的令人惊讶的现象。相对强烈的激光脉冲脉冲在微管目标的外表面出现,该脉冲由围绕$μ$ m尺度的圆柱圆柱体的薄壳壳组成,驱动了初始离子内爆,后来爆炸,能够产生并随后扩大强烈的强磁场。虽然通过应用kilotesla级的种子场增强并在空间上平滑磁场的产生,但生成场的符号并不总是遵循种子场的符号。放大过程的一个意外结果是在放大磁场的符号中的逆转,例如,目标外部横截面从正方形变为圆形。使用2D粒子中的模拟,我们证明了符号逆转与在激光照射期间在目标内表面产生的相对符号的表面磁场的稳定性有关。表面磁场的稳定性以及最终放大场的迹象敏感地取决于目标,激光器和种子磁场条件,可以利用这些条件使激光器驱动的微管型微管成为一个有吸引力的平台,用于在符号反向或不希望的符号反向逆转方案中高能量密度等离子体中磁场的研究。
We demonstrate and explain the surprising phenomenon of sign reversal in magnetic field amplification by the laser-driven implosion of a structured target. Relativistically intense laser pulses incident on the outer surface of a microtube target consisting of thin opaque shell surrounding a $μ$m-scale cylindrical void drive an initial ion implosion and later explosion capable of generating and subsequently amplifying strong magnetic fields. While the magnetic field generation is enhanced and spatially smoothed by the application of a kilotesla-level seed field, the sign of the generated field does not always follow the sign of the seed field. One unexpected consequence of the amplification process is a reversal in the sign of the amplified magnetic field when, for example, the target outer cross section is changed from square to circular. Using 2D particle-in-cell simulations, we demonstrate that sign reversal is linked to the stability of the surface magnetic field of opposite sign from the seed which arises at the target inner surface during laser irradiation. The stability of the surface magnetic field and consequently the sign of the final amplified field depends sensitively on the target, laser, and seed magnetic field conditions, which could be leveraged to make laser-driven microtube implosions an attractive platform for the study of magnetic fields in high energy density plasma in regimes where sign reversal either is or is not desired.