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Mechanisms of surface nanostructuring of Al2O3 and MgO by grazing incidence irradiation with swift heavy ions (CROSBI ID 299468)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Karlušić, Marko ; Rymzhanov, Ruslan ; O'Connell, Jacques, Brockers, Lara ; Tomić Luketić, Kristina ; Siketić, Zdravko ; Fazinić, Stjepko ; Dubček, Pavo ; Jakšić, Milko ; Provatas, Georgios ; Medvedev, Nikita et al. Mechanisms of surface nanostructuring of Al2O3 and MgO by grazing incidence irradiation with swift heavy ions // Surfaces and interfaces, 27 (2021), 101508, 10. doi: 10.1016/j.surfin.2021.101508

Podaci o odgovornosti

Karlušić, Marko ; Rymzhanov, Ruslan ; O'Connell, Jacques, Brockers, Lara ; Tomić Luketić, Kristina ; Siketić, Zdravko ; Fazinić, Stjepko ; Dubček, Pavo ; Jakšić, Milko ; Provatas, Georgios ; Medvedev, Nikita ; Volkov, Alexander ; Schleberger, MArika

engleski

Mechanisms of surface nanostructuring of Al2O3 and MgO by grazing incidence irradiation with swift heavy ions

We experimentally discovered that Al2O3 and MgO exhibit well-pronounced nanometric modifications on the surfaces when irradiated under grazing incidence with 23 MeV I beam, in contrast to normal incidence irradiation with the same ion beam when no damage was found. Moreover, ions in these two materials produce notably different structures: grooves surrounded with nanohillocks on MgO surfaces vs. smoother, roll-like discontinuous structures on the surfaces of Al2O3. To explain these results, detailed numerical simulations were performed. We identified that a presence of the surface inhibits recrystallization process, thereby preventing transient tracks from recovery, and thus forming observable nanopatterns. Furthermore, a difference in the viscosities in molten states in Al2O3 vs. MgO explains the differences in the created nanostructures. Our results thus provide a deeper understanding of the fundamental processes of surface nanostructuring, potentially allowing for controlled production of periodic surface nanopatterns.

ion irradiation ; irradiation effects ; swift heavy ion ; atomic force microscopy ; MD simulation

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Podaci o izdanju

27

2021.

101508

10

objavljeno

2468-0230

10.1016/j.surfin.2021.101508

Povezanost rada

Fizika

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