论文标题

探测具有谐振小角度X射线散射的固体内部超快激光等离子体过程

Probing ultrafast laser plasma processes inside solids with resonant small-angle X-ray scattering

论文作者

Gaus, Lennart, Bischoff, Lothar, Bussmann, Michael, Cunningham, Eric, Curry, Chandra B., Galtier, Eric, Gauthier, Maxence, García, Alejandro Laso, Garten, Marco, Glenzer, Siegfried, Grenzer, Jörg, Gutt, Christian, Hartley, Nicholas J., Huang, Lingen, Hübner, Uwe, Kraus, Dominik, Lee, Hae Ja, McBride, Emma E., Metzkes-Ng, Josefine, Nagler, Bob, Nakatsutsumi, Motoaki, Nikl, Jan, Ota, Masato, Pelka, Alexander, Prencipe, Irene, Randolph, Lisa, Rödel, Melanie, Sakawa, Youichi, Schlenvoigt, Hans-Peter, Šmíd, Michal, Treffert, Franziska, Voigt, Katja, Zeil, Karl, Cowan, Thomas E., Schramm, Ulrich, Kluge, Thomas

论文摘要

物质的极端状态在整个宇宙中存在,例如内部行星岩心,星星或天体物理喷气机。在实验室中,在强大的激光器与固体的相互作用中产生了此类条件,可以使用超短X射线脉冲使用飞秒的精度探测它们的进化,以研究实验室天体物理学,激光融合研究或紧凑的粒子加速。 X射线散射(SAXS)模式及其在原子界限横向跃迁的X射线能量上发生的不对称,其中包含有关密度,电离和温度的体积纳米镜分布的信息。热强度激光辐照固体中埋入的重离子结构在热量扩散后在纳米尺度上扩展,并加热到超过200万个开尔文。这些实验证明了共鸣的SAX,目的是更好地表征极端实验室等离子体中的动态过程。

Extreme states of matter exist throughout the universe e.g. inside planetary cores, stars or astrophysical jets. Such conditions are generated in the laboratory in the interaction of powerful lasers with solids, and their evolution can be probed with femtosecond precision using ultra-short X-ray pulses to study laboratory astrophysics, laser-fusion research or compact particle acceleration. X-ray scattering (SAXS) patterns and their asymmetries occurring at X-ray energies of atomic bound-bound transitions contain information on the volumetric nanoscopic distribution of density, ionization and temperature. Buried heavy ion structures in high intensity laser irradiated solids expand on the nanometer scale following heat diffusion, and are heated to more than 2 million Kelvin. These experiments demonstrate resonant SAXS with the aim to better characterize dynamic processes in extreme laboratory plasmas.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源