Department of Physics of Magnetism selected papers
- Maziewski, R.Szymczak, Visual observation of phase domains in dysprosium orthoferrite, J. Phys. D:Appl. Phys. vol.10, 137 (1977).
- Szymczak, A.Maziewski, K.Piotrowski, Domain structure in weak ferromagnets near Neel temperature, Journal of Magnetism and Magnetic Materials 12, 227 (1979).
- Maziewski, Unexpected magnetization processes in YIG+Co films, Journal of Magnetism and Magnetic Materials, 88, 325 (1990).
- Uba, L. Uba, A. N. Yaresko, A. Ya. Perlov, V. N. Antonov, and R. Gontarz, Optical and magneto-optical properties of Co/Pt multilayers, Phys. Rev. B 53, 6526 (1996).
- Ferré, V.Grolier, P.Meyer, A.Maziewski, E.Stefanowicz, S.V.Tarasenko, V.V.Tarasenko, M.Kisielewski, D.Renard, Magnetization reveral processes in an ultrathin Co/Au film, Phys.Rev.B, 55, 22, 15 092 (1997).
- B. Chizhik, I. Davidenko, A. Maziewski, A. Stupakiewicz, High temperature photomagnetism in Co doped yttrium iron garnet films, Phys.Rev.B, 57, 21 (1998).
- Gieniusz, H. Ulrichs, V. D. Bessonov, U. Guzowska, A. I. Stognii, A. Maziewski, „Single antidot as a passive way to create caustic spin-wave beams in yttrium iron garnet films”Appl. Phys. Lett. 102, 102409 (2013).
- Kisielewski, A.Maziewski, M.Tekielak, A.Wawro, L.T.Baczewski, New possibilities for tuning ultrathin cobalt film magnetic properties by a noble metals overlayer, Physical Review Letters 89, 8, 87203 (2002).
- Kisielewski, A. Maziewski, T. Polyakova, and V. Zablotskii, Wide-scale evolution of magnetization distribution in ultrathin films, Phys.Rev.B 69 (2004) 184419.
- Maziewski, P. Mazalski, Z. Kurant, M. O. Liedke, J. McCord, J. Fassbender, J. Ferré, A. Mougin, A. Wawro, L. T. Baczewski, A. Rogalev, F. Wilhelm, and T. Gemming, Tailoring of magnetism in Pt/Co/Pt ultrathin films by ion irradiation, Phys. Rev. B 85, 054427 (2012).
- Sakamaki, K. Amemiya, M. O. Liedke, J. Fassbender, P. Mazalski, I. Sveklo, and A. Maziewski, Perpendicular magnetic anisotropy in a Pt/Co/Pt ultrathin film arising from a lattice distortion induced by ion irradiation, Phys. Rev. B 86, 024418 (2012).
- Uba, S. Uba, L. P. Germash, L. V. Bekenov, and V. N. Antonov, Electronic structure and magneto-optical spectra of LaxSr1−xMnO3 perovskites: Theory and experiment, Phys. Rev. B 85, 125124 (2012).
- Maziewski, J.Fassbender, J. Kisielewski, M. Kisielewski, Z. Kurant, P. Mazalski, F. Stobiecki, A. Stupakiewicz, I. Sveklo, M. Tekielak, A. Wawro, and V. Zablotskii, Magnetization states and magnetization processes in nanostructures: From a single layer to multilayers, Phys. Status Solidi A, 211, 1005 (2014).
- Stupakiewicz, A. Chizhik, M. Tekielak, A. Zhukov, J. Gonzalez, and A. Maziewski, Direct imaging of the magnetization reversal in microwires using all-MOKE microscopy REVIEW OF SCIENTIFIC INSTRUMENTS 85, 103702 (2014).
- Stupakiewicz, K. Szerenos, D. Afanasiev, A. Kirilyuk, A. V. Kimel, Ultrafast nonthermal photo-magnetic recording in a transparent medium, Nature 542, 71 (2017).
- Stupakiewicz, K. Szerenos, M.D. Davydova, K.A. Zvezdin, A.K. Zvezdin, A. Kirilyuk, and A.V. Kimel, “Selection rules for all-optical magnetic recording in iron garnet”, Nature Comm. 10, 612 (2019).
- Stupakiewicz, C. S. Davies, K. Szerenos, D. Afanasiev, K. S. Rabinovich, A. V. Boris, A. Caviglia, A. V. Kimel and A. Kirilyuk, Ultrafast phononic switching of magnetization, Nature Physics | VOL 17 | April 2021 | 489–492 | www.nature.com/naturephysics
- Makowski, J. Bomba, A. Frej, M. Kolodziejczyk, M. Sypek, T. Shimobaba, T. Ito, A. Kirilyuk, A. Stupakiewicz, Dynamic complex opto-magnetic holography, Nature Comm. 13, 7286 (2022).
- Kisielewski, P. Gruszecki, M Krawczyk, V. Zablotskii, A.Maziewski, Between waves and patterns: spin wave freezing in films with Dzyaloshinskii-Moriya interaction, Phys.Rev.B (2023).
- C.S. Davies, F.G.N. Fennema, A. Tsukamoto, I. Razdolski, A.V. Kimel, and A. Kirilyuk, “Phononic switching of magnetization by the ultrafast Barnett effect”, Nature 628, 540 (2024).
- T.Zalewski, A.Maziewski, A.V.Kimel, A.Stupakiewicz, Ultrafast all-optical toggle writing of magnetic bits without relying on heat, Nature Communications, | (2024) 15:4451 https://doi.org/10.1038/s41467-024-48438-3