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超强激光与纳米结构近临界等离子体的相互作用。

Ultra-intense laser interaction with nanostructured near-critical plasmas.

作者信息

Fedeli Luca, Formenti Arianna, Cialfi Lorenzo, Pazzaglia Andrea, Passoni Matteo

机构信息

Department of Energy, Politecnico di Milano, Via Ponzio 34/3, Milano, 20133, Italy.

出版信息

Sci Rep. 2018 Mar 1;8(1):3834. doi: 10.1038/s41598-018-22147-6.

Abstract

Near-critical plasmas irradiated at ultra-high laser intensities (I > 10W/cm) allow to improve the performances of laser-driven particle and radiation sources and to explore scenarios of great astrophysical interest. Near-critical plasmas with controlled properties can be obtained with nanostructured low-density materials. By means of 3D Particle-In-Cell simulations, we investigate how realistic nanostructures influence the interaction of an ultra-intense laser with a plasma having a near-critical average electron density. We find that the presence of a nanostructure strongly reduces the effect of pulse polarization and enhances the energy absorbed by the ion population, while generally leading to a significant decrease of the electron temperature with respect to a homogeneous near-critical plasma. We also observe an effect of the nanostructure morphology. These results are relevant both for a fundamental understanding and for the foreseen applications of laser-plasma interaction in the near-critical regime.

摘要

在超高激光强度(I > 10W/cm)下辐照的近临界等离子体有助于提高激光驱动粒子源和辐射源的性能,并探索具有重大天体物理意义的场景。具有可控特性的近临界等离子体可以通过纳米结构的低密度材料获得。通过三维粒子模拟,我们研究了实际的纳米结构如何影响超强激光与具有近临界平均电子密度的等离子体之间的相互作用。我们发现,纳米结构的存在会强烈降低脉冲极化的影响,并增强离子群体吸收的能量,同时相对于均匀的近临界等离子体,通常会导致电子温度显著降低。我们还观察到了纳米结构形态的影响。这些结果对于深入理解近临界状态下的激光-等离子体相互作用以及其预期应用都具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/627f/5832818/4b12348a34e3/41598_2018_22147_Fig1_HTML.jpg

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