论文标题

飞秒激光引起的介电内部血浆等血浆:I。田间增强

Femtosecond laser-induced sub-wavelength plasma inside dielectrics: I. Field enhancement

论文作者

Ardaneh, Kazem, Meyer, Remi, Hassan, Mostafa, Giust, Remo, Morel, Benoit, Couairon, Arnaud, Bonnaud, Guy, Courvoisier, Francois

论文摘要

高能密度($ \ gtrsim10^6 $ joules每厘米$^3 $)在大容量中过度关键等离子体在温暖的密集物质中具有重要的应用,并存在于恒星和行星的热核中。最近显示,飞秒的贝塞尔束可以在蓝宝石内部产生超小波长半径和长度几十微米的过度临界等离子体。在这里,通过执行自洽的粒子中(PIC)模拟来研究场结构和吸收机制对等离子体密度横向轮廓的依赖性。考虑了两个{limiting}情况:一个是一种类似同质的阶梯状轮廓,可以维持等离子形成,第二个是不均匀的高斯曲线,在此发生了共振吸收。比较实验吸收指标与分析预测可以确定PIC模拟中使用的等离子体参数。 PIC仿真结果与总吸收,近场和场辐射模式的实验诊断非常吻合。我们表明,在每种情况下,由于热电子的膨胀,在血浆表面形成了双极场,并且电子声波传播到临界区域过度。

The creation of high energy density ($\gtrsim10^6$ joules per cm$^3$) over-critical plasmas in a large volume has essential applications in the study of warm dense matter, being present in the hot cores of stars and planets. It was recently shown that femtosecond Bessel beams enable creating over-critical plasmas inside sapphire with sub-wavelength radius and several tens of micrometers in length. Here, the dependence of field structure and absorption mechanism on the plasma density transverse profile are investigated by performing self-consistent Particle-In-Cell (PIC) simulations. Two { limiting} cases are considered: one is a homogeneous step-like profile, that can sustain plasmon formation, the second is an inhomogeneous Gaussian profile, where resonance absorption occurs. Comparing experimental absorption measures to analytical predictions allows determining the plasma parameters used in PIC simulations. The PIC simulation results are in good agreement with experimental diagnostics of total absorption, near-field fluence distribution, and far-field radiation pattern. We show that in each case an ambipolar field forms at the plasma surface due to the expansion of the hot electrons and that electron sound waves propagate into the over-critical region.

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