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AMU physics



M.Sc. Yulia Kharlan

Department of Physics of Nanostructures

Scientific degrees

MSc in physics – 2019
BSc in physics – 2018

Research interests

Keywords: magnetic materials, magnetic resonance, three magnon processes, superconductivity

I investigate spin wave dynamic in different magnetic structures, namely arrays of nanoparticles and Heusler alloys films. Another research brunch is devoted to calculation of the efficiency of multi-magnon interactions in nanoelements. Now I’m starting research of superconducting materials and their mutual interaction with magnetic nanoobjects.

 


Publications

2024

6.

Yulia Kharlan, Krzysztof Szulc, Jarosław W. Kłos, Grzegorz Centała

Tunable magnonic crystal in a hybrid superconductor-ferrimagnet nanostructure

Scientific Reports, 14 (1), pp. 25594, 2024, ISSN: 2045-2322.

Abstract | Links | BibTeX

5.

Yulia Kharlan, Krzysztof Sobucki, Krzysztof Szulc, Sara Memarzadeh, Jarosław W. Kłos

Spin-wave confinement in a hybrid superconductor-ferrimagnet nanostructure

Phys. Rev. Appl., 21 , pp. 064007, 2024.

Abstract | Links | BibTeX

4.

Krzysztof Szulc, Yulia Kharlan, Pavlo Bondarenko, Elena V. Tartakovskaya, Maciej Krawczyk

Impact of surface anisotropy on the spin-wave dynamics in a thin ferromagnetic film

Phys. Rev. B, 109 , pp. 054430, 2024.

Links | BibTeX

2023

3.

Pavlo V Bondarenko, Yulia Kharlan, Sergey A Bunyaev, Olga Salyuk, Ivan R Aseguinolaza, Jose M Barandiaran, Gleb N Kakazei, Volodymyr Chernenko, Vladimir O Golub

Giant four-fold magnetic anisotropy in nanotwinned NiMnGa epitaxial films

APL Materials, 11 (12), pp. 121114, 2023, ISSN: 2166-532X.

Abstract | Links | BibTeX

2.

Victor A L'vov, Yulia Kharlan, Vladimir O Golub

Nonrelaxational FMR peak broadening in spatially inhomogeneous films

Journal of Magnetism and Magnetic Materials, 580 , pp. 170906, 2023, ISSN: 0304-8853.

Abstract | Links | BibTeX

1.

Arezoo Etesamirad, Yulia Kharlan, Rodolfo Rodriguez, Igor Barsukov, Roman Verba

Controlling Selection Rules for Magnon Scattering in Nanomagnets by Spatial Symmetry Breaking

Phys. Rev. Appl., 19 , pp. 044087, 2023.

Abstract | Links | BibTeX

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