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- W3207988102 abstract "Ultrafast X-ray diffraction enables the study of structural dynamics at an atomic time and length scale. With a laser-driven table-top hard X-ray source, this technique can be brought to a laboratory scale. Here, the X-ray generation process is based on the nonlinear interaction of a strong-field optical pulse with a metallic target. Electrons are extracted from the metal target via tunnel ionization and accelerated in the laser field, and their maximum kinetic energy scales with the intensity and the square of the driver wavelength [1] . Most used driving lasers are ultrafast Ti:sapphire laser systems emitting at 0.8 µm wavelength. To maximize the X-ray flux, long wavelength few-cycle pulses at kHz repetition rate and pulse energies of several mJ are required. Here, we present a novel, ultrafast hard X-ray source operated at 1 kHz repetition rate [2] . It is driven by a few-cycle mid-infrared (mid-IR) OPCPA at 5 µm wavelength with 33 GW peak power." @default.
- W3207988102 created "2021-11-08" @default.
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- W3207988102 date "2021-06-21" @default.
- W3207988102 modified "2023-10-16" @default.
- W3207988102 title "Ultrafast, High-flux hard X-ray Source driven by a Few-cycle 5 µm OPCPA" @default.
- W3207988102 cites W2067301836 @default.
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- W3207988102 doi "https://doi.org/10.1109/cleo/europe-eqec52157.2021.9592649" @default.
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