6533b827fe1ef96bd1286ffa
RESEARCH PRODUCT
Nanoscale subsurface dynamics of solids upon high-intensity laser irradiation observed by femtosecond grazing-incidence x-ray scattering
Lisa RandolphMohammadreza BanjafarThomas R. PrestonToshinori YabuuchiMikako MakitaNicholas P. DoverChristian RödelSebastian GödeYuichi InubushiGerhard JakobJohannes KaaAkira KonJames K. KogaDmitriy KsenzovTakeshi MatsuokaMamiko NishiuchiMichael PaulusFrederic SchonKeiichi SuedaYasuhiko SentokuTadashi TogashiMehran Vafaee-khanjaniMichael BussmannThomas E. CowanMathias KläuiCarsten Fortmann-groteLingen HuangAdrian P. MancusoThomas KlugeChristian GuttMotoaki Nakatsutsumisubject
Plasma Physics (physics.plasm-ph)Condensed Matter - Mesoscale and Nanoscale PhysicsMesoscale and Nanoscale Physics (cond-mat.mes-hall)FOS: Physical sciencesPhysics - Plasma Physicsdescription
Observing ultrafast laser-induced structural changes in nanoscale systems is essential for understanding the dynamics of intense light-matter interactions. For laser intensities on the order of $10^{14} \, \rm W/cm^2$, highly-collisional plasmas are generated at and below the surface. Subsequent transport processes such as heat conduction, electron-ion thermalization, surface ablation and resolidification occur at picosecond and nanosecond time scales. Imaging methods, e.g. using x-ray free-electron lasers (XFEL), were hitherto unable to measure the depth-resolved subsurface dynamics of laser-solid interactions with appropriate temporal and spatial resolution. Here we demonstrate picosecond grazing-incidence small-angle x-ray scattering (GISAXS) from laser-produced plasmas using XFEL pulses. Using multi-layer (ML) samples, both the surface ablation and subsurface density dynamics are measured with nanometer depth resolution. Our experimental data challenges the state-of-the-art modeling of matter under extreme conditions and opens new perspectives for laser material processing and high-energy-density science.
year | journal | country | edition | language |
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2020-12-30 |