Ultrafast time-resolved 2D imaging of laser-driven fast electron transport in solid density matter using an x-ray free electron laser

H. Sawada, T. Yabuuchi,N. Higashi, T. Iwasaki,K. Kawasaki, Y. Maeda, T. Izumi, Y. Nakagawa,K. Shigemori,Y. Sakawa, C. B. Curry,M. Frost, N. Iwata,T. Ogitsu, K. Sueda,T. Togashi, S. H. Glenzer,A. J. Kemp,Y. Ping, Y. Sentoku

REVIEW OF SCIENTIFIC INSTRUMENTS(2023)

引用 0|浏览7
暂无评分
摘要
High-power, short-pulse laser-driven fast electrons can rapidly heat and ionize a high-density target before it hydrodynamically expands. The transport of such electrons within a solid target has been studied using two-dimensional (2D) imaging of electron-induced Ka radiation. However, it is currently limited to no or picosecond scale temporal resolutions. Here, we demonstrate femtosecond time-resolved 2D imaging of fast electron transport in a solid copper foil using the SACLA x-ray free electron laser (XFEL). An unfocused collimated x-ray beam produced transmission images with sub-micron and similar to 10 fs resolutions. The XFEL beam, tuned to its photon energy slightly above the Cu K-edge, enabled 2D imaging of transmission changes induced by electron isochoric heating. Time-resolved measurements obtained by varying the time delay between the x-ray probe and the optical laser show that the signature of the electron-heated region expands at similar to 25% of the speed of light in a picosecond duration. Time-integrated Cu Ka images support the electron energy and propagation distance observed with the transmission imaging. The x-ray near-edge transmission imaging with a tunable XFEL beam could be broadly applicable for imaging isochorically heated targets by laser-driven relativistic electrons, energetic protons, or an intense x-ray beam. (c) 2023 Author(s).
更多
查看译文
关键词
ultrafast electron transport,solid density matter,2d imaging,time-resolved,laser-driven,x-ray
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要