Measurement of high-dynamic range x-ray Thomson scattering spectra for the characterization of nano-plasmas at LCLS

Atomic clusters can serve as ideal model systems for exploring ultrafast (∼100 fs) laser-driven ionization dynamics of dense matter on the nanometer scale. Resonant absorption of optical laser pulses enables heating to temperatures on the order of 1 keV at near solid density conditions. To date, dir...

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Veröffentlicht in:Review of scientific instruments 2016-11, Vol.87 (11)
Hauptverfasser: MacDonald, M. J., SLAC National Accelerator Laboratory, Menlo Park, California 94025, Gorkhover, T., Technische Universität, 10623 Berlin, Bachmann, B., Hau-Riege, S. P., Pardini, T., Döppner, T., Bucher, M., Argonne National Lab, Lemont, Illinois 60439, Carron, S., Coffee, R. N., Fletcher, L. B., Gamboa, E. J., Glenzer, S. H., Göde, S., Krzywinski, J., O’Grady, C. P., Osipov, T., Swiggers, M., Drake, R. P., Ferguson, K. R., Stanford University, Stanford, California 94305, Kraus, D.
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Sprache:eng
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Zusammenfassung:Atomic clusters can serve as ideal model systems for exploring ultrafast (∼100 fs) laser-driven ionization dynamics of dense matter on the nanometer scale. Resonant absorption of optical laser pulses enables heating to temperatures on the order of 1 keV at near solid density conditions. To date, direct probing of transient states of such nano-plasmas was limited to coherent x-ray imaging. Here we present the first measurement of spectrally resolved incoherent x-ray scattering from clusters, enabling measurements of transient temperature, densities, and ionization. Single shot x-ray Thomson scattering signals were recorded at 120 Hz using a crystal spectrometer in combination with a single-photon counting and energy-dispersive pnCCD. A precise pump laser collimation scheme enabled recording near background-free scattering spectra from Ar clusters with an unprecedented dynamic range of more than 3 orders of magnitude. Such measurements are important for understanding collective effects in laser-matter interactions on femtosecond time scales, opening new routes for the development of schemes for their ultrafast control.
ISSN:0034-6748
1089-7623
DOI:10.1063/1.4960502