Wang Wenpeng, Shen Baifei, Zhang Xiaomei, Zhang Lingang, Shi Yin, Xu Zhizhan
State Key Laboratory of High Field Laser Physics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, P.O. Box 800-211, Shanghai 201800, China.
Sci Rep. 2015 Feb 5;5:8274. doi: 10.1038/srep08274.
With the development of ultra-intense laser technology, MeV ions can be obtained from laser-foil interactions in the laboratory. These energetic ion beams can be applied in fast ignition for inertial confinement fusion, medical therapy, and proton imaging. However, these ions are mainly accelerated in the laser propagation direction. Ion acceleration in an azimuthal orientation was scarcely studied. In this research, a doughnut Laguerre-Gaussian (LG) laser is used for the first time to examine laser-plasma interaction in the relativistic intensity regime in three-dimensional particle-in-cell simulations. Studies have shown that a novel rotation of the plasma is produced from the hollow screw-like drill of an mode laser. The angular momentum of particles in the longitudinal direction produced by the LG laser is enhanced compared with that produced by the usual laser pulses, such as linearly and circularly polarized Gaussian pulses. Moreover, the particles (including electrons and ions) can be trapped and uniformly compressed in the dark central minimum of the doughnut LG pulse. The hollow-structured LG laser has potential applications in the generation of x-rays with orbital angular momentum, plasma accelerators, fast ignition for inertial confinement fusion, and pulsars in the astrophysical environment.
随着超强激光技术的发展,在实验室中可通过激光与箔片相互作用获得兆电子伏特离子。这些高能离子束可应用于惯性约束聚变的快点火、医学治疗和质子成像。然而,这些离子主要沿激光传播方向加速。方位角方向的离子加速很少被研究。在本研究中,首次使用环形拉盖尔 - 高斯(LG)激光在三维粒子模拟中研究相对论强度 regime 下的激光 - 等离子体相互作用。研究表明,由模式激光的空心螺旋状钻孔产生了一种新型的等离子体旋转。与由诸如线性和圆偏振高斯脉冲等普通激光脉冲产生的纵向粒子角动量相比,LG 激光产生的纵向粒子角动量得到增强。此外,粒子(包括电子和离子)可被捕获并在环形 LG 脉冲的暗中心最小值处均匀压缩。空心结构的 LG 激光在具有轨道角动量的 X 射线产生、等离子体加速器、惯性约束聚变的快点火以及天体物理环境中的脉冲星方面具有潜在应用。