Leblanc A, Monchocé S, Vincenti H, Kahaly S, Vay J-L, Quéré F
LIDYL, CEA, CNRS, Université Paris-Saclay, CEA Saclay, 91 191 Gif-sur-Yvette, France.
Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.
Phys Rev Lett. 2017 Oct 13;119(15):155001. doi: 10.1103/PhysRevLett.119.155001.
Spatial properties of high-order harmonic beams produced by high-intensity laser-matter interactions carry rich information on the physics of the generation process, and their detailed understanding is essential for applications of these light beams. We present a thorough study of these properties in the case of harmonic generation from plasma mirrors, up to the relativistic interaction regime. In situ ptychographic measurements of the amplitude and phase spatial profiles of the different harmonic orders in the target plane are presented, as a function of the key interaction parameters. These measurements are used to validate analytical models of the harmonic spatial phase in different generation regimes, and to benchmark ultrahigh-order Maxwell solvers of particle-in-cell simulation codes.
高强度激光与物质相互作用产生的高阶谐波光束的空间特性,承载着有关产生过程物理的丰富信息,对这些光束的详细理解对于其应用至关重要。我们对等离子体镜产生谐波的情况进行了深入研究,直至相对论相互作用 regime。给出了目标平面中不同谐波阶次的振幅和相位空间分布的原位叠层成像测量结果,作为关键相互作用参数的函数。这些测量用于验证不同产生 regime 中谐波空间相位的解析模型,并对粒子模拟代码中的超高阶麦克斯韦求解器进行基准测试。