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Characterization of laser excited shock waves in tenuous plasma

机译:脆弱等离子体中激光激发冲击波的表征

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The observation and characterization of collisionless shock waves generated in laser plasma interactions is presented. The shock waves are generated by long pulse ~1ns, intense (10~(15)W=cm~2) laser irradiation of solid targets and are observed to propagate in a tenuous (10~(13) - 10~(16)cm~(-3)), non magnetized background plasma. These nonlinear entities are detected and characterized by employing a proton imaging technique, which allows the simultaneous detection of propagation velocity, width of the shock front and electrostatic field associated with the shock, with high spatial and temporal resolution. Ion Acoustic Solitons (IAS) were observed under certain conditions and as inferred from the reconstructed associated electric field profile. The variation of IAS velocity and width as a function of the ambient parameters was characterized. The data show an increase in velocity and decrease in width as the density of the background plasma (generated via photo ionization of controlled, low density gas in a gas cell) is increased. The experimental results are interpreted in the frame work of Korteweg-de Vries nonlinear wave description and in agreement with theoretical predications.
机译:介绍了激光等离子体相互作用中产生的碰撞冲击波的观察和表征。通过长脉冲〜1ns产生冲击波,强烈(10〜(15)W = cm〜2)激光照射固体靶标,并且被观察到在脆弱(10〜(13) - 10〜(16)厘米处繁殖〜(-3)),非磁化背景等离子体。通过采用质子成像技术来检测和表征这些非线性实体,该技术允许同时检测与冲击相关的震动前沿和静电场的传播速度,宽度,具有高空间和时间分辨率。在某些条件下观察离子声孤子孤子(IAS),并从重建的相关电场轮廓推断出来。表征了作为环境参数的函数的IAS速度和宽度的变化。数据显示速度的增加和宽度的减小,作为背景等离子体的密度(通过控制的受控电离产生的,气体电池中的低密度气体产生)。实验结果被解释在Korteeg-de VRIES非线性波描述的框架工作中,并与理论上的预测一致。

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