Topological structures
2025
P. S. Bednyakov, I. Rafalovskyi, and J. Hlinka
Fragmented charged domain wall below the tetragonal-orthorhombic phase transition in BaTiO3
Appl. Phys. Lett. 126, 012909 (2025).V. Stepkova and J. Hlinka
Creation, annihilation and transport of nonmagnetic antiskyrmions within Ginzburg–Landau–Devonshire model
J. Appl. Phys. 137, 034102 (2025).2024
A. Chaudron, Z. Li, A. Finco, P. Marton, P. Dufour, A. Abdelsamie, J.Fischer, S. Collin, B. Dkhil, J. Hlinka, V. Jacques , J.-Y. Chauleau, M. Viret, K. Bouzehouane, S. Fusil, and V. Garcia
Electric-field-induced multiferroic topological solitons
Nat. Mater. 23, 905 (2024).M. A. P. Gonçalves, M. Paściak, and J. Hlinka
Antiskyrmions in ferroelectric barium titanate
Phys. Rev. Lett. 133, 066802 (2024).G. Bastien, Q. Courtade, A. Eliáš, T. Haidamak, P. Proschek, M. Dušek, J. Priessnitz, P. Baláž, and R.H. Colman
Quasi-two-dimensional ferromagnetism in the triangular magnet EuAl12O19
Phys. Rev. B 110, 094436 (2024).2023
P. Marton, M.A.P. Gonçalves,M. Paściak, S. Körbel, V. Chumchal, M. Plešinger, A. Klíč, and J. Hlinka
Zigzag charged domain walls in ferroelectric PbTiO3
Phys. Rev. B 107, 094102 (2023).P. Baláž, M. Zwierzycki, F. Cosco, K. Carva, P. Maldonado, and P. M. Oppeneer
Theory of superdiffusive spin transport in noncollinear magnetic multilayers
Phys. Rev. B 107, 174418 (2023).2022
P. Baláž
Interaction of in-plane magnetic skyrmions with 90° magnetic domain walls: micromagnetic simulations
Phys. Rev. Appl. 17, 044031 (2022).F. Mayer, M. N. Popov, P. Ondrejkovic, J. Hlinka, J. Spitaler, and M. Deluca
Finite-temperature investigation of homovalent and heterovalent substituted BaTiO3 from first principles
Phys. Rev. B 106, 224109 (2022).Z. An, S. Xie, P. Ondrejkovic, P. Marton, E. de Prado, H. Yokota, W. Ren, Z.-G. Ye, A. M. Glazer, M. Paściak, and N. Zhang
Phase transition hysteresis at the antiferroelectric-ferroelectric boundary in PbZr1−xTixO3
Phys. Rev. B 106, 224103 (2022).2021
P. Baláž, M. Paściak and J. Hlinka
Melting of Néel skyrmion lattice
Phys. Rev. B 103, 174411 (2021).M. Hadjimichael, Y. Li, E. Zatterin, G. A. Chahine, M. Conroy, K. Moore, E. N. O’ Connell, P. Ondrejkovic, P. Marton, J. Hlinka, U. Bangert, S. Leake, and P. Zubko
Metal–ferroelectric supercrystals with periodically curved metallic layers
Nat. Mater. 20, 495 (2021).2020
G.F. Nataf, M. Guennou, J.M. Gregg, D. Meier, J. Hlinka, E.K.H. Salje, and J. Kreisel
Domain-wall engineering and topological defects in ferroelectric and ferroelastic materials
Nat. Rev. Phys. 2, 634 (2020).A. S. Everhardt, T. Denneulin, A. Gruenebohm, Y.-T. Shao, P. Ondrejkovic, S. Zhou, N. Domingo, G. Catalan, J. Hlinka, J.-M. Zuo, S. Matzen, B. Noheda
Temperature-independent giant dielectric response in transitional BaTiO3 thin films
Appl. Phys. Rev. 7, 011402 (2020).P. Ondrejkovic, P. Marton, V. Stepkova, and J. Hlinka,
Fundamental properties of ferroelectric domain walls from Ginzburg-Landau models, Chapter 4 in Domain Walls: From Fundamental Properties to Nanotechnology Concepts, edited by Dennis Meier, Jan Seidel, Marty Gregg, and Ramamoorthy Ramesh,
Series on Semiconductor Science and Technology, Oxford University Press, 2020, pp. 76-108.2019
J. Hlinka and P. Ondrejkovic,