Search Results - "Schnuerer, Matthias"

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  1. 1

    Ultrafast energy-dispersive soft-x-ray diffraction in the water window with a laser-driven source by Jarecki, Jasmin, Hennecke, Martin, Sidiropoulos, Themistoklis, Schnuerer, Matthias, Eisebitt, Stefan, Schick, Daniel

    Published in Structural dynamics (Melville, N.Y.) (01-09-2024)
    “…Time-resolved soft-x-ray-diffraction experiments give access to microscopic processes in a broad range of solid-state materials by probing ultrafast dynamics…”
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    Journal Article
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    Prospects of target nanostructuring for laser proton acceleration by Lübcke, Andrea, Andreev, Alexander A., Höhm, Sandra, Grunwald, Ruediger, Ehrentraut, Lutz, Schnürer, Matthias

    Published in Scientific reports (14-03-2017)
    “…In laser-based proton acceleration, nanostructured targets hold the promise to allow for significantly boosted proton energies due to strong increase of laser…”
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    Journal Article
  4. 4

    Monitoring of Evolving Laser Induced Periodic Surface Structures by Lübcke, Andrea, Pápa, Zsuzsanna, Schnürer, Matthias

    Published in Applied sciences (01-09-2019)
    “…Laser induced periodic surface structures (LIPSS) are generated on titanium and silicon nitride surfaces by multiple femtosecond laser pulses. An optical…”
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    Journal Article
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    Ultrafast energy-dispersive soft-x-ray diffraction in the water window with a laser-driven source by Jarecki, Jasmin, Hennecke, Martin, Sidiropoulos, Themistoklis, Schnuerer, Matthias, Eisebitt, Stefan, Schick, Daniel

    Published 08-07-2024
    “…Time-resolved soft-x-ray-diffraction experiments give access to microscopic processes in a broad range of solid-state materials by probing ultrafast dynamics…”
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    Journal Article
  7. 7

    PROTON STOPPING POWER OF DIFFERENT DENSITY PROFILE PLASMAS by Casas, David, Barriga-Carrasco, Manuel D., Andreev, Alexander A., Schnürer, Matthias, Morales, Roberto

    “…In this work, the stopping power of a partially ionized plasma is analyzed by means of free electron stopping and bound electron stopping. For the first…”
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    Journal Article
  8. 8

    Self-compression by femtosecond pulse filamentation: experiments versus numerical simulations by Skupin, Stefan, Stibenz, Gero, Bergé, Luc, Lederer, Falk, Sokollik, Thomas, Schnürer, Matthias, Zhavoronkov, Nickolai, Steinmeyer, Günter

    “…We analyze pulse self-compression in femtosecond filaments, both experimentally and numerically. We experimentally demonstrate the compression of 45 fs pulses…”
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    Journal Article
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    Lateral movement of a laser-accelerated proton source on the target's rear surface by Nakamura, Tatsufumi, Mima, Kunioki, Ter-Avetisyan, Sargis, Schnürer, Matthias, Sokollik, Thomas, Nickles, Peter V, Sandner, Wolfgang

    “…The spatial dependence of proton acceleration at the rear surface of a target that is irradiated by high-contrast and ultraintense laser pulses is…”
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    Journal Article
  12. 12

    Streaking transient electric fields with laser accelerated proton beams by Sokollik, Thomas, Schnuerer, Matthias, Ter-Avetisyan, Sargis, Nickles, Peter Viktor, Priebe, Gerd, Risse, Enrico, Kalashnikov, Mikhail, Amin, Munib, Toncian, Toma, Willi, Oswald, Sandner, Wolfgang

    “…A long range electric field with nanosecond duration and a localized field at the rear side of a laser irradiated foil have been investigated. This scenario…”
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    Conference Proceeding