Tata Institute of Fundamental Research, Homi Bhabha Road, Mumbai, 400005, India.
Max Planck Institute for the Structure and Dynamics of Matter, Luruper Chaussee, 22761, Hamburg, Germany.
Sci Rep. 2017 Aug 21;7(1):8347. doi: 10.1038/s41598-017-08619-1.
The transport of hot, relativistic electrons produced by the interaction of an intense petawatt laser pulse with a solid has garnered interest due to its potential application in the development of innovative x-ray sources and ion-acceleration schemes. We report on spatially and temporally resolved measurements of megagauss magnetic fields at the rear of a 50-μm thick plastic target, irradiated by a multi-picosecond petawatt laser pulse at an incident intensity of ~10 W/cm. The pump-probe polarimetric measurements with micron-scale spatial resolution reveal the dynamics of the magnetic fields generated by the hot electron distribution at the target rear. An annular magnetic field profile was observed ~5 ps after the interaction, indicating a relatively smooth hot electron distribution at the rear-side of the plastic target. This is contrary to previous time-integrated measurements, which infer that such targets will produce highly structured hot electron transport. We measured large-scale filamentation of the hot electron distribution at the target rear only at later time-scales of ~10 ps, resulting in a commensurate large-scale filamentation of the magnetic field profile. Three-dimensional hybrid simulations corroborate our experimental observations and demonstrate a beam-like hot electron transport at initial time-scales that may be attributed to the local resistivity profile at the target rear.
由于其在开发创新 X 射线源和离子加速方案方面的潜在应用,强激光与固体相互作用产生的热相对论电子的输运引起了人们的兴趣。我们报告了在 50μm 厚的塑料靶后,用强度约为 10 W/cm 的多皮秒皮瓦激光脉冲照射时,兆高斯磁场的空间和时间分辨测量结果。具有微米级空间分辨率的泵浦-探测偏振测量揭示了靶后热电子分布产生的磁场的动力学。在相互作用后约 5 ps 观察到环形磁场轮廓,表明在塑料靶的后侧存在相对平滑的热电子分布。这与之前的时间积分测量结果相反,后者推断此类靶将产生高度结构化的热电子输运。我们仅在约 10 ps 的后续时间尺度上测量到靶后热电子分布的大规模细丝化,导致磁场轮廓的相应大规模细丝化。三维混合模拟证实了我们的实验观察结果,并证明了初始时间尺度上的束状热电子输运,这可能归因于靶后局部电阻率分布。