A femtosecond X-ray/optical cross-correlator

被引:0
|
作者
Cornelius Gahl
Armin Azima
Martin Beye
Martin Deppe
Kristian Döbrich
Urs Hasslinger
Franz Hennies
Alexej Melnikov
Mitsuru Nagasono
Annette Pietzsch
Martin Wolf
Wilfried Wurth
Alexander Föhlisch
机构
[1] Fachbereich Physik,
[2] Freie Universität Berlin,undefined
[3] Institut für Experimentalphysik,undefined
[4] Universität Hamburg,undefined
[5] Max-Born-Institut für nichtlineare Optik und Kurzzeitphysik,undefined
[6] MAX-lab,undefined
[7] Lund Universitet,undefined
[8] HASYLAB/DESY,undefined
来源
Nature Photonics | 2008年 / 2卷
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摘要
For a fundamental understanding of ultrafast dynamics in chemistry, biology and materials science it has been a long-standing dream to record a molecular movie in which both the atomic trajectories and the chemical states of every atom in matter are followed in real time1. Free-electron lasers provide this perspective as they deliver brilliant femtosecond X-ray pulses spanning a wide photon energy range, which is necessary to gather element-specific and chemical-state-selective information with femtosecond time resolution. The key challenge lies in synchronizing the free-electron lasers with separate optical lasers. We exploit the peak brilliance of the free-electron laser in Hamburg2,3 (FLASH) and establish X-ray- pulse-induced transient changes of the optical reflectivity in GaAs as a powerful tool for X-ray/optical cross-correlation. This constitutes a breakthrough in the path towards recording a molecular movie and—equally importantly—opens up the field of femtosecond X-ray-induced dynamics, only accessible with high-brilliance X-ray free-electron lasers.
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页码:165 / 169
页数:4
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