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首页> 外文期刊>Physics of plasmas >Solitary wake field microdynamics of the pulsed laser induced microbubbles in three-dimensional dusty plasma liquids
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Solitary wake field microdynamics of the pulsed laser induced microbubbles in three-dimensional dusty plasma liquids

机译:三维尘埃等离子体液体中脉冲激光诱导的微气泡的孤立尾流场微观动力学

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摘要

The Eulerian/Lagrangian dynamics in the narrow wake field of the dusty plasma bubble is explored by directly tracking dust motion at the microscopic level. The bubble is induced by the focused laser pulse ablation in three-dimensional quiescent dusty plasma liquids operated in the pressure higher than the critical pressure for the self-excitation of dust acoustic wave by the downward ion wind. It is found that, after bubble expansion ceases, the collective excitation maintains its width and travels downward as a solitary wave, led by an ultrasonic rarefaction front contributed by the dust motion below the lower boundary, and trailed by the few compressional crests with descending crest heights and speeds in the narrow wake, under the symmetry breaking by the downward ion flow. The quick damping of the waves propagating along other directions leads to a narrow wake. Increasing the background pressure causes the more isotropic collapsing of the bubble without wake field oscillation. The role played by dust motion on interacting with and sustaining the wake field evolution is identified and discussed.
机译:通过直接在微观水平上跟踪尘埃运动,探索了尘土等离子体气泡的狭窄尾流场中的欧拉/拉格朗日动力学。气泡是由聚焦的激光脉冲烧蚀在三维静态多尘尘埃等离子体液体中引起的,该等离子体液体的工作压力高于通过向下离子风自激尘埃声波的临界压力。发现在气泡膨胀停止后,集体激发保持其宽度并以孤立波的形式向下传播,这是由下部边界以下的粉尘运动引起的超声波稀疏前沿导致的,并由少数具有顶降的压缩顶跟随在向下对称的离子流的作用下,窄尾流中的高度和速度处于对称状态。沿其他方向传播的波的快速衰减导致较窄的尾波。背景压力的增加会导致气泡更加各向同性地塌陷,而不会引起唤醒场振荡。灰尘运动在与尾流场相互作用和维持尾流场相互作用中所扮演的角色已得到确定和讨论。

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