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The role of standing wave in the generation of hot electrons by femtosecond laser beams incident on dense ionized target

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    0555696 - ÚFP 2022 RIV US eng J - Journal Article
    Babjak, Róbert - Pšikal, J.
    The role of standing wave in the generation of hot electrons by femtosecond laser beams incident on dense ionized target.
    Physics of Plasmas. Roč. 28, č. 2 (2021), č. článku 023107. ISSN 1070-664X. E-ISSN 1089-7674
    R&D Projects: GA MŠMT EF16_019/0000778
    Institutional support: RVO:61389021
    Keywords : wave * femtosecond * dense ionized target
    OECD category: Optics (including laser optics and quantum optics)
    Impact factor: 2.357, year: 2021
    Method of publishing: Limited access
    https://aip.scitation.org/doi/10.1063/5.0031555

    We demonstrate the differences in hot electron absorption mechanisms dominant in the interaction of a femtosecond laser pulse with intensities of 10 18 W / cm2 and 10 21 W / cm2 on a fully ionized target with a steep density profile and preplasma with moderate scale length (3 μm). We show that acceleration of each electron starts at the moment when the magnetic component of a standing electromagnetic wave changes its polarity in a regime without preplasma. In the presence of preplasma, the stochastic heating is the dominant absorption mechanism along with the longitudinal electric field. It is observed that wave's energy is absorbed only if the standing wave is already created at the position of electron during the interaction with the pulse with an intensity of 10 18 W / cm2. In the case with 10 21 W / cm2 intensity, the part of the electrons is pre-accelerated in front of the target before the reflection and following stochastic heating. The presence of preplasma results in electron temperatures close to or even exceeding ponderomotive scaling. At higher intensity, the re-injection of electrons previously repelled by incident wave's ponderomotive force into high-field regions is allowed if the standing wave is created.
    Permanent Link: http://hdl.handle.net/11104/0330160

     
     
Number of the records: 1  

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