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Konzorcium, fő p.: Mágnesség és szupravezetés fémes nanokompozitokban
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Ezen az oldalon az NKFI Elektronikus Pályázatkezelő Rendszerében nyilvánosságra hozott projektjeit tekintheti meg.
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Pyeongjae Park, Joosung Oh, Klára Uhlirová, Jerome Jackson, András Deák, László Szunyogh, Ki Hoon Lee,Hwanbeom Cho, Ha-Leem Kim, Helen C. Walker, Devashibhai Adroja, Vladimir Sechovsky and Je-Geun Park: Magnetic excitations in non-collinear antiferromagnetic Weyl semimetal Mn3Sn, npj Quantum Materials 3, 63, 2018 | E. Simon and L. Szunyogh: Spin-spiral formalism based on the multiple-scattering Green's function technique with applications to ultrathin magnetic films and multilayers, Physical Review B 100, 134428, 2019 | B. Nagyfalusi, L. Udvardi, and L. Szunyogh: Metadynamics study of the temperature dependence of magnetic anisotropy and spin-reorientation transitions in ultrathin films, Physical Review B 100, 174429, 2019 | E. Simon, A. Donges, L. Szunyogh and U. Nowak: Noncollinear antiferromagnetic states in Ru-based Heusler compounds induced by biquadratic coupling, Physical Review Materials 4, 084408, 2020 | S. K. Ghosh, G. Csire, P. Whittlesea, J. F. Annett, M. Gradhand, B. Újfalussy, and J. Quintanilla: Quantitative theory of triplet pairing in the unconventional superconductor LaNiGa2, Physical Review B 101, 100506(R), 2020 | T. G. Saunderson, J. F. Annett, B. Újfalussy, G. Csire, and M. Gradhand: Gap anisotropy in multiband superconductors based on multiple scattering theory, Physical Review B 101, 064510, 2020 | G. Csire, B. Ujfalussy, and J. F. Annett: Nonunitary triplet pairing in the noncentrosymmetric superconductor LaNiC2, European Physical Journal B 91, 217, 2018 | Z. Tajkov,D. Visontai, L. Oroszlány, and J. Koltai: Topological Phase Diagram of BiTeX–Graphene Hybrid Structures, Applied Sciiences 9(20), 4330, 2019 | Z. Tajkov, J. Koltai, J. Cserti, and L. Oroszlány: Competition of topological and topologically trivial phases in patterned graphene based heterostructures, Physical Review B 101, 235146, 2020 | K. Palotás, L. Rózsa, E. Simon, and L. Szunyogh: Prediction of maximally efficient spin switching of magnetic skyrmionic textures in spin-polarized STM from theoretical calculations, Journal of Magnetism and Magnetic Materials, in print, 2020 | J. Hagemeister, A. Siemens, L. Rózsa, E. Y. Vedmedenko, and R. Wiesendanger: Controlled creation and stability of kπ skyrmions on a discrete lattice, Physical Review B 97, 174436, 2018 | E. Simon, R. Yanes, S. Khmelevskyi, K. Palotás, L. Szunyogh, and U. Nowak: Magnetism and exchange-bias effect at the MnN/Fe interface, Physical Review B 98, 094415, 2018 | A. Lászlóffy, L. Rózsa, K. Palotás, L. Udvardi, and L. Szunyogh: Magnetic structure of monatomic Fe chains on Re(0001): Emergence of chiral multispin interactions, Physical Review B 99, 184430, 2019 | L. Oroszlány, J. Ferrer, A. Deák, L. Udvardi, and L. Szunyogh: Exchange interactions from a nonorthogonal basis set: From bulk ferromagnets to the magnetism in low-dimensional graphene systems, Physical Review B 99, 224412, 2019 | Krisztián Palotás: High-resolution combined tunneling electron charge and spin transport theory of Néel and Bloch skyrmions, Physical Review B 98, 094409, 2018 | Lucas Schneider , Manuel Steinbrecher, Levente Rózsa, Juba Bouaziz , Krisztián Palotás, Manuel dos Santos Dias, Samir Lounis, Jens Wiebe and Roland Wiesendanger: Magnetism and in-gap states of 3d transition metal atoms on superconducting Re, npj Quantum Materials 4, 42, 2019 | Péter Boross, János K. Asbóth, Gábor Széchenyi, László Oroszlány, and András Pályi: Poor man’s topological quantum gate based on the Su-Schrieffer-Heeger model, Physical Review B 100, 045414, 2019 | Zoltán Tajkov, Dávid Visontai, László Oroszlány, and János Koltai: Uniaxial strain induced topological phase transition in bismuth–tellurohalide–graphene heterostructures, Nanoscale 11, 12704, 2019 | L. Rózsa, S. Selzer, T. Birk, U. Atxitia, and U. Nowak: Reduced thermal stability of antiferromagnetic nanostructures, Physical Review B 100, 064422, 2019 | A. F. Schäffer, L. Rózsa, J. Berakdar, E. Y. Vedmedenko, and R. Wiesendanger: Stochastic dynamics and pattern formation of geometrically confined skyrmions, Communications Physics. 2, 72, 2019 | L. Rózsa, J. Hagemeister, E. Y. Vedmedenko, and R. Wiesendanger: Localized spin waves in isolated kπ skyrmions, Physical Review B 98, 224426, 2018 | L. Rózsa, J. Hagemeister, E. Y. Vedmedenko, and R. Wiesendanger: Effective damping enhancement in noncollinear spin structures, Physical Review B 98, 100404(R), 2018 | A. Lászlóffy, L. Rózsa, K. Palotás, L. Udvardi, and L. Szunyogh: Magnetic structure of monatomic Fe chains on Re(0001): Emergence of chiral multispin interactions, Physical Review B 99, 184430, 2019 | Péter Boross, János K. Asbóth, Gábor Széchenyi, László Oroszlány, and András Pályi: Poor man’s topological quantum gate based on the Su-Schrieffer-Heeger model, Physical Review B 100, 045414, 2019 | L. Rózsa, S. Selzer, T. Birk, U. Atxitia, and U. Nowak: Reduced thermal stability of antiferromagnetic nanostructures, Physical Review B 100, 064422, 2019 | A. F. Schäffer, L. Rózsa, J. Berakdar, E. Y. Vedmedenko, and R. Wiesendanger: Stochastic dynamics and pattern formation of geometrically confined skyrmions, Communications Physics 2, 72, 2019 | B. Nyári, A. Deák, and L. Szunyogh: Weak ferromagnetism in hexagonal Mn3Z alloys (Z = Sn, Ge, Ga), Physical Review B 100, 144412, 2019 | L. Oroszlány, J. Ferrer, A. Deák, L. Udvardi, and L. Szunyogh: Exchange interactions from a nonorthogonal basis set: From bulk ferromagnets to the magnetism in low-dimensional graphene systems, Physical Review B 99, 224412, 2019 | L. Oroszlány, A. Deák, E. Simon, S. Khmelevskyi, L. Szunyogh: Magnetism of Gadolinium: a First-Principles Perspective, Physical Review Letters 115, 096402, 2015 | E. Simon, J. Gy. Vida, S. Khmelevskyi, L. Szunyogh: Magnetism of ordered and disordered Ni2MnAl full Heusler compounds, Physical Review B 92, 054438, 2015 | Xiaoqing Li, Stephan Schönecker, Eszter Simon, Lars Bergqvist, Hualei Zhang, László Szunyogh, Jijun Zhao6, Börje Johansson, Levente Vitos: Tensile strain-induced softening of iron at high temperature, Scientific Reports 5, 16654, 2015 | P. Rakyta, B. Ujfalussy, L. Szunyogh: Band bending at the surface of Bi2Se3 studied from first principles, New Journal of Physics 17, 123011, 2015 | J. Rácz, P. F. de Chatel, I. A. Szabó, L. Szunyogh, I. Nándori: Improved efficiency of heat generation in nonlinear dynamics of magnetic nanoparticles, Physical Review E 93, 012607, 2016 | L. Rózsa, E. Simon, K. Palotás, L. Udvardi, L. Szunyogh: Complex magnetic phase diagram and skyrmion lifetime in an ultrathin film from atomistic simulations, Pysical Review B 93, 024417, 2016 | K. Palotás, G. Mándi, L. Szunyogh: Enhancement of the spin transfer torque efficiency in magnetic STM junctions, Physical Review B, 94, 064434, 2016 | S. Khmelevskyi, E. Simon, L. Szunyogh, P. Mohn: Microscopic origin of ferro-antiferromagnetic transition upon non-magnetic substitution in Ru2(Mn1-xVx)Ge full Heusler alloys, Journal of Alloys and Compounds 692, 178, 2017 | G. Csire, J. Cserti, I. Tüttő, and B. Újfalussy: Prediction of superconducting transition temperatures of heterostructures based on the quasiparticle spectrum, Physical Review B 94, 104511, 2016 | Deak A, Hinzke D, Szunyogh L, Nowak U: Role of temperature-dependent spin model parameters in ultra-fast magnetization dynamics, J PHYS CONDENS MAT 29: (31), 2017 | Donges A, Khmelevskyi S, Deak A, Abrudan RM, Schmitz D, Radu I, Radu F, Szunyogh L, Nowak U: Magnetization compensation and spin reorientation transition in ferrimagnetic DyCo5: Multiscale modeling and element-specific measurements, PHYS REV B 96: (2), 2017 | Gerlach S, Oroszlany L, Hinzke D, Sievering S, Wienholdt S, Szunyogh L, Nowak U: Modeling ultrafast all-optical switching in synthetic ferrimagnets, PHYS REV B 95: (22), 2017 | Laszloffy A, Udvardi L, Szunyogh L: Atomistic simulation of finite-temperature magnetism of nanoparticles: Application to cobalt clusters on Au(111), PHYS REV B 95: (18), 2017 | Rózsa L, Palotás K, Deák A, Simon E, Yanes R, Udvardi L, Szunyogh L, Nowak U: Formation and stability of metastable skyrmionic spin structures with various topologies in an ultrathin film, PHYS REV B 95: (9), 2017 | Rózsa L, Deák A, Simon E, Yanes R, Udvardi L, Szunyogh L, Nowak U: Skyrmions with Attractive Interactions in an Ultrathin Magnetic Film, PHYS REV LETT 117: (15), 2016 | Vida GyJ, Simon E, Rózsa L, Palotás K, Szunyogh L: Domain-wall profiles in Co/Irn /Pt(111) ultrathin films: Influence of the Dzyaloshinskii-Moriya interaction, PHYS REV B 94: (21), 2016 | K. Palotás, L. Rózsa, E. Simon, L. Udvardi, L. Szunyogh: Spin-polarized scanning tunneling microscopy characteristics of skyrmionic spin structures exhibiting various topologies, Physical Review B 96, 024410, 2017 | R. Yanes, E. Simon, S. Keller, B. Nagyfalusi, S. Khmelevsky, L. Szunyogh, and U. Nowak: Interfacial exchange interactions and magnetism of Ni2MnAl/Fe bilayers, Physical Review B, 96, 064435, 2017 | A. Finco, L. Rózsa, Pin-Jui Hsu, A. Kubetzka, E. Vedmedenko, K. von Bergmann, and R. Wiesendanger: Temperature-Induced Increase of Spin Spiral Periods, Physical Review Letters, 119, 037202, 2017 | G. Csire, S. Schönecker, and B. Újfalussy: First-principles approach to thin superconducting slabs and heterostructures, Physical Review B 94, 140502(R), 2016 | G. Csire, J. Cserti and B. Újfalussy: First principles based proximity effect of superconductor–normal metal heterostructures, J. Phys.: Condens. Matter 28, 495701, 2016 | Rózsa L, Deák A, Simon E, Yanes R, Udvardi L, Szunyogh L, Nowak U: Skyrmions with Attractive Interactions in an Ultrathin Magnetic Film, PHYS REV LETT 117: (15), 2016 | Vida GyJ, Simon E, Rózsa L, Palotás K, Szunyogh L: Domain-wall profiles in Co/Irn /Pt(111) ultrathin films: Influence of the Dzyaloshinskii-Moriya interaction, PHYS REV B 94: (21), 2016 | Rózsa L, Palotás K, Deák A, Simon E, Yanes R, Udvardi L, Szunyogh L, Nowak U: Formation and stability of metastable skyrmionic spin structures with various topologies in an ultrathin film, PHYS REV B 95, 094423, 2017 | Deak A, Hinzke D, Szunyogh L, Nowak U: Role of temperature-dependent spin model parameters in ultra-fast magnetization dynamics, J PHYS CONDENS MAT 29: (31), 2017 | Donges A, Khmelevskyi S, Deak A, Abrudan RM, Schmitz D, Radu I, Radu F, Szunyogh L, Nowak U: Magnetization compensation and spin reorientation transition in ferrimagnetic DyCo5: Multiscale modeling and element-specific measurements, PHYS REV B 96, 024412, 2017 | Gerlach S, Oroszlany L, Hinzke D, Sievering S, Wienholdt S, Szunyogh L, Nowak U: Modeling ultrafast all-optical switching in synthetic ferrimagnets, PHYS REV B 95, 224435, 2017 | Laszloffy A, Udvardi L, Szunyogh L: Atomistic simulation of finite-temperature magnetism of nanoparticles: Application to cobalt clusters on Au(111), PHYS REV B 95, 184406, 2017 | Cuadrado R, Oroszlány L, Szunyogh L, Hrkac G, Chantrell RW, Ostler TA: A multiscale model of the effect of Ir thickness on the static and dynamic properties of Fe/Ir/Fe films, SCI REP 8: (1) Paper 3879. 13 p., 2018 | Cuadrado Ramón, Oroszlány László, Deák András, Ostler Thomas A, Meo Andrea, Chepulskii Roman V, Apalkov Dmytro, Evans Richard F L, Szunyogh László, Chantrell Roy W: Site-Resolved Contributions to the Magnetic-Anisotropy Energy and Complex Spin Structure of Fe/MgO Sandwiches, PHYS REV APPL 9: (5) Paper 054048. 5 p., 2018 | Howon Kim, Alexandra Palacio-Morales, Thore Posske, Levente Rózsa, Krisztián Palotás, László Szunyogh, Michael Thorwart, Roland Wiesendanger: Toward tailoring Majorana bound states in artificially constructed magnetic atom chains on elemental superconductors, SCIENCE ADVANCES 4: (5) Paper eaar5251. 7 p., 2018 | Hsu P-J, Rózsa L, Finco A, Schmidt L, Palotás K, Vedmedenko E, Udvardi L, Szunyogh L, Kubetzka A, Von Bergmann K, Wiesendanger R: Inducing skyrmions in ultrathin Fe films by hydrogen exposure, NAT COMMUN 9: (1) Paper 1571. 7 p., 2018 | Palotás K, Szunyogh L: Screened KKR, SPRINGER PROC PHYS 204: pp. 381-386., 2018 | Simon E, Rozsa L, Palotas K, Szunyogh L: Magnetism of a Co monolayer on Pt(111) capped by overlayers of 5d elements: A spin-model study, PHYS REV B 97: (13) Paper 134405. 11 p., 2018 | Hirohata A, Huminiuc T, Sinclair J, Wu HKF, Samiepour M, Vallejo-Fernandez G, O'Grady K, Balluf J, Meinert M, Reiss G, Simon E, Khmelevskyi S, Szunyogh L, Diaz RY, Nowak U, Tsuchiya T, Sugiyama T, Kubota T, Takanashi K, Inami N, Ono K: Development of antiferromagnetic Heusler alloys for the replacement of iridium as a critically raw material, J PHYS D APPL PHYS 50: (43) Paper 443001. 14 p., 2017 | L. Rózsa, U. Atxitia, and U. Nowak: Temperature scaling of the Dzyaloshinsky-Moriya interaction in the spin wave spectrum, Physical Review B 96, 094436, 2017 | Palotas K, Rozsa L, Szunyogh L: Theory of high-resolution tunneling spin transport on a magnetic skyrmion, PHYS REV B 97: (17) Paper 174402. 15 p., 2018 | Gábor Csire, András Deák, Bendegúz Nyári, Hubert Ebert, James F. Annett, and Balázs Újfalussy: Relativistic spin-polarized KKR theory for superconducting heterostructures: Oscillating order parameter in the Au layer of Nb/Au/Fe trilayers, Phys. Rev. B 97, 024514, 2018 | Bálint Fülöp, Zoltán Tajkov, János Pető, Péter Kun, János Koltai, László Oroszlány, Endre Tóvári, Hiroshi Murakawa, Yoshinori Tokura, and Sándor Bordács: Exfoliation of single layer BiTeI flakes, 2D Matererials 5, 031013, 2018 | László Oroszlány, Balázs Dóra, József Cserti, and Alberto Cortijo: Topological and trivial magnetic oscillations in nodal loop semimetals, Phys. Rev. B 97, 205107, 2018 | Z. Tajkov D. Visontai P. Rakyta L. Oroszlány J. Koltai: Transport Properties of Graphene‐BiTeI Hybrid Structures, Physica Status Solidi C 14, UNSP 1700215, 2018 | T. Ščepka, P. Neilinger, A. S. Samardak, A. G. Kolesnikov, A. V. Ognev, A. V. Sadovnikov, V. A. Gubanov, S. A. Nikitov, K. Palotás, E. Simon, L. Szunyogh, J. Dérer, V. Cambel, M. Mruczkiewicz: Damping in Ru/Co-based multilayer films with large Dzyaloshinskii-Moriya interaction, arXiv:1911.02467, 2019 | T. G. Saunderson, Zs. Györgypál, J. F. Annett, G. Csire, B. Újfalussy, M. Gradhand: Real-space multiple scattering theory for superconductors with impurities, arXiv:2009.08766, 2020 |
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