Počet záznamů: 1  

Two-level ablation and damage morphology of Ru films under femtosecond extreme UV irradiation

  1. 1.
    SYSNO ASEP0540252
    Druh ASEPJ - Článek v odborném periodiku
    Zařazení RIVJ - Článek v odborném periodiku
    Poddruh JČlánek ve WOS
    NázevTwo-level ablation and damage morphology of Ru films under femtosecond extreme UV irradiation
    Tvůrce(i) Milov, I. (NL)
    Zhakhovsky, V. (RU)
    Ilnitsky, D. (RU)
    Migdal, K. (RU)
    Khokhlov, V. (RU)
    Petrov, Y. (RU)
    Inogamov, N. (RU)
    Lipp, V. (DE)
    Medvedev, Nikita (UFP-V) ORCID
    Ziaja, B. (DE)
    Medvedev, V. (RU)
    Makhotkin, I.A. (NL)
    Louis, E. (NL)
    Bijkerk, F. (NL)
    Celkový počet autorů14
    Číslo článku146952
    Zdroj.dok.Applied Surface Science. - : Elsevier - ISSN 0169-4332
    Roč. 528, October (2020), s. 1-18
    Poč.str.18 s.
    Jazyk dok.eng - angličtina
    Země vyd.NL - Nizozemsko
    Klíč. slovaExtreme ultraviolet ; Femtosecond laser ablation ; Free-electron laser ; Molecular dynamics ; Monte Carlo ; Thin films
    Vědní obor RIVBL - Fyzika plazmatu a výboje v plynech
    Obor OECDFluids and plasma physics (including surface physics)
    CEPLTT17015 GA MŠMT - Ministerstvo školství, mládeže a tělovýchovy
    LM2015083 GA MŠMT - Ministerstvo školství, mládeže a tělovýchovy
    Způsob publikováníOpen access
    Institucionální podporaUFP-V - RVO:61389021
    UT WOS000576740200009
    EID SCOPUS85087332352
    DOI10.1016/j.apsusc.2020.146952
    AnotaceThe dynamics of a thin ruthenium film irradiated by femtosecond extreme UV laser pulses is studied with a hybrid computational approach, which includes Monte Carlo, two-temperature hydrodynamics and molecular dynamics models. This approach is capable of accurate simulations of all stages of material evolution induced by extreme UV or X-ray photons: from nonequilibrium electron kinetics till complete lattice relaxation. We found that fast energy deposition in a subsurface layer leads to a two-level ablation: the top thin layer is ablated as a gas–liquid mixture due to expansion of overheated material at near and above critical conditions, whereas a thicker liquid layer below is ablated via a cavitation process. The latter occurs due to a thermo-mechanically induced tensile pressure wave. The liquid ablating layer exhibits unstable behaviour and disintegrates into droplets soon after detachment from the rest of the target. Our simulations reveal basic processes leading to formation of specific surface morphologies outside and inside the damage craters. The calculated ablation threshold, crater depth and morphological features are in quantitative agreement with the experimental data, which justifies the applicability of our hybrid model to study laser-induced material damage.
    PracovištěÚstav fyziky plazmatu
    KontaktVladimíra Kebza, kebza@ipp.cas.cz, Tel.: 266 052 975
    Rok sběru2021
    Elektronická adresahttps://www.sciencedirect.com/science/article/pii/S0169433220317098?via%3Dihub
Počet záznamů: 1  

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