Search Results - "Borodziuk, S."

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  1. 1

    Implementation of amplitude–phase analysis of complex interferograms for measurement of spontaneous magnetic fields in laser generated plasma by Zaraś-Szydłowska, A., Pisarczyk, T., Chodukowski, T., Rusiniak, Z., Dudzak, R., Dostal, J., Kalal, M., Kochetkov, Iu, Krupka, M., Borodziuk, S., Pisarczyk, P.

    Published in AIP advances (01-11-2020)
    “…Generation of spontaneous magnetic fields (SMFs) is one of the most interesting phenomena accompanying an intense laser–matter interaction. One method of…”
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    Neutron production in cavity pressure acceleration of plasma objects by Chodukowski, T., Borodziuk, S., Rusiniak, Z., Cikhardt, J., Jach, K., Krasa, J., Rosinski, M., Terwinska, D., Dudzak, R., Pisarczyk, T., Swierczynski, R., Burian, T., Tchorz, P., Dostal, J., Szymanski, M., Pfeifer, M., Skala, J., Singh, S., Krupka, M., Krus, M.

    Published in AIP advances (01-08-2020)
    “…The laser-induced Cavity Pressure Acceleration (CPA) scheme [S. Borodziuk et al., Appl. Phys. Lett. 95, 231501 (2009)] allows for effective transformation of…”
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  4. 4

    Highly efficient acceleration and collimation of high-density plasma using laser-induced cavity pressure by Badziak, J., Borodziuk, S., Pisarczyk, T., Chodukowski, T., Krousky, E., Masek, K., Skala, J., Ullschmied, J., Rhee, Yong-Joo

    Published in Applied physics letters (21-06-2010)
    “…An efficient scheme of acceleration and collimation of dense plasma is proposed and examined. In the scheme, a target placed in a cavity coupled with a guiding…”
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  5. 5

    How Produce a Plasma Jet Using a Single and Low Energy Laser Beam by Nicolai, Ph, Tikhonchuk, V T, Kasperczuk, A, Pisarczyk, T, Borodziuk, S, Rohlena, K, Ullschmied, J

    Published in Astrophysics and space science (01-01-2007)
    “…Under suitable conditions on laser intensity, focal spot radius and atomic number a radiative jet was launched from a planar target. This jet was produced…”
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    Forward and backward cavity pressure acceleration of macroparticles by Borodziuk, S., Chodukowski, T., Kalinowska, Z., Kasperczuk, A., Pisarczyk, T., Ullschmied, J., Krousky, E., Pfeifer, M., Rohlena, K., Skala, J., Pisarczyk, P.

    Published in Applied physics letters (05-12-2011)
    “…In this paper we present our new results obtained during the experiment performed on Prague Asterix Laser System. We used cavity pressure acceleration method…”
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  11. 11

    Cavity pressure acceleration: An efficient laser-based method of production of high-velocity macroparticles by Borodziuk, S., Kasperczuk, A., Pisarczyk, T., Badziak, J., Chodukowski, T., Ullschmied, J., Krousky, E., Masek, K., Pfeifer, M., Rohlena, K., Skala, J., Pisarczyk, P.

    Published in Applied physics letters (07-12-2009)
    “…We propose an efficient method of accelerating macroparticles to high velocities, which employs pressure of the plasma produced by a focused pulsed high-power…”
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  12. 12

    Reversed scheme of thin foil acceleration by Borodziuk, S., Kasperczuk, A., Pisarczyk, T., Ullschmied, J., Krousky, E., Masek, K., Pfeifer, M., Rohlena, K., Skala, J., Pisarczyk, P.

    Published in Applied physics letters (08-09-2008)
    “…An alternative concept for accelerating thin foils to high velocity has been proposed and tested. The thin ( 10   μ m ) Al foil has been accelerated by the…”
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  13. 13

    Energy of a shock wave generated in different metals under irradiation by a high-power laser pulse by Gus’kov, S. Yu, Kasperczuk, A., Pisarczyk, T., Borodziuk, S., Ullschmied, J., Krousky, E., Masek, K., Pfeifer, M., Skala, J., Pisarczyk, P.

    “…The energies of a shock wave generated in different metals under irradiation by a high-power laser beam were determined experimentally. The experiments were…”
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  14. 14
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    Highly efficient acceleration and collimation of high-density plasma using laser-induced cavity pressure by Badziak, J, Borodziuk, S, Pisarczyk, T, Chodukowski, T, Krousky, E, Masek, K, Skala, J, Ullschmied, J, Rhee, Yong-Joo

    Published 05-01-2010
    “…A novel efficient scheme of acceleration and collimation of dense plasma is proposed and examined. In the proposed scheme, a target placed in a cavity at the…”
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    Journal Article