论文标题

从偏光超固定激光脉冲照射的金属液滴中的喷射积液

Jet effusion from a metal droplet irradiated by a polarized ultrashort laser pulse

论文作者

Grigoryev, S. Yu., Lakatosh, B. V., Solyankin, P. M., Krivokorytov, M. S., Zhakhovsky, V. V., Dyachkov, S. A., Ohl, C. -D., Shkurinov, A. P., Medvedev, V. V.

论文摘要

在我们的实验中观察到了线性和圆极化飞秒激光脉冲辐照的液态金属液滴的碎片。获得的阴影仪快照表明,圆形极化的脉冲可能会产生从膨胀液滴中产生的几种随机导向的喷气机,而线性极化激光脉冲严格生成十字架喷射。后一个方向与极化平面绑在一起,其旋转会导致十字形喷气机的旋转,以相同的角度旋转。为了阐明实验数据,我们对依赖角依赖加热诱导的液滴膨胀进行了分子动力学模拟。 我们的仿真表明,射流方向是在吸收线性极化光线后额半球层中液滴层内的定向角度依赖的能量分布确定的。结果,在我们的实验中,由表面张力引导的产生的流速场形成了在电场矢量上定向的两个高速对面的喷气机。 额叶中产生的冲击波脉冲具有从方向的能量沉积中遗传的角度依赖性振幅。冲击脉冲的释放部分在液滴中心附近产生一个空化区,因此由液滴形成了膨胀的球形壳。从液滴的后侧反射冲击波后产生的壳后半球内的流速,产生了沿电场矢量的两个低速对面的射流。因此,我们发现十字形喷气式飞机独立于液滴的额叶和后侧,并且一对额头喷头比一对后侧喷气机更快。

Fragmentation of liquid metal droplets irradiated by linearly and circularly polarized femtosecond laser pulses is observed in our experiment. The obtained shadowgraph snapshots demonstrate that a circularly polarized pulse may produce several randomly-oriented jets effused from the expanding droplets, while a linearly polarized laser pulse generates strictly the cruciform jets. The latter orientation is tied with polarization plane, rotation of which causes rotation of the cruciform jets by the same angle. To shed light on the experimental data we performed molecular dynamics simulation of droplet expansion induced by angle-dependent heating. Our simulation shows that the jet directions are determined by an oriented angle-dependent energy distribution within a frontal hemisphere layer of droplet after absorption of linearly polarized light. As a result, the produced flow velocity field guided by surface tension forms two high-speed opposite jets oriented across the electric field vector as in our experiment. A shock-wave pulse generated in the frontal layer has angle-dependent amplitude inherited from the oriented energy deposition. The release part of shock pulse produces a cavitation zone nearby the droplet center, and thus an expanding spherical shell is formed from the droplet. The flow velocities within a rearside hemisphere of the shell, produced after reflection of the shock wave from the rear side of droplet, generate two low-speed opposite jets oriented along the electric field vector. Thus we found that the cruciform jets are originated independently from the frontal and rear sides of droplet, and a pair of frontal jets is faster than a pair of rearside jets.

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