论文标题
相对论的短脉冲激光 - 血浆与施加的种子磁场的强烈表面磁场产生
Strong surface magnetic field generation in relativistic short pulse laser-plasma interaction with an applied seed magnetic field
论文作者
论文摘要
虽然血浆通常以Diamagnet的方式行为,但我们证明了用嵌入式目标透射式种子磁场$ B_ \ MATHRM {seed} $激光辐射的薄不透明靶标可以触发具有相反符号在目标表面的磁场更强大的磁场的生成。当激光脉冲相对强烈时,就会发生强烈的地面场产生,并且是由与激光加热的电子通过靶标和冷电子的补偿电流相关的电流引起的。 We derive a predictive scaling for this surface field generation, $B_\mathrm{gen} \sim - 2 πB_\mathrm{seed} Δx/λ_0$, where $Δx$ is the target thickness and $λ_0$ is the laser wavelength, and conduct 1D and 2D particle-in-cell simulations to confirm its applicability over a wide range of conditions.我们还证明,种子和表面生成的磁场都可以对相关的等离子动力学产生强大的影响,例如,从$μ$ m thick激光射击靶标的基尔斯拉级元素磁场从$ $ $ m thick激光射射线靶标开始了总体膨胀和离子加速度。
While plasma often behaves diamagnetically, we demonstrate that the laser irradiation of a thin opaque target with an embedded target-transverse seed magnetic field $B_\mathrm{seed}$ can trigger the generation of an order-of-magnitude stronger magnetic field with opposite sign at the target surface. Strong surface field generation occurs when the laser pulse is relativistically intense and results from the currents associated with the cyclotron rotation of laser-heated electrons transiting through the target and the compensating current of cold electrons. We derive a predictive scaling for this surface field generation, $B_\mathrm{gen} \sim - 2 πB_\mathrm{seed} Δx/λ_0$, where $Δx$ is the target thickness and $λ_0$ is the laser wavelength, and conduct 1D and 2D particle-in-cell simulations to confirm its applicability over a wide range of conditions. We additionally demonstrate that both the seed and surface-generated magnetic fields can have a strong impact on application-relevant plasma dynamics, for example substantially altering the overall expansion and ion acceleration from a $μ$m-thick laser-irradiated target with a kilotesla-level seed magnetic field.