Skyrmion Hall effect revealed by direct time-resolved X-ray microscopy K Litzius, I Lemesh, B Krüger, P Bassirian, L Caretta, K Richter, F Büttner, ... Nature Physics 13, 170, 2017 | 826 | 2017 |
Static and dynamical properties of antiferromagnetic skyrmions in the presence of applied current and temperature J Barker, OA Tretiakov Physical review letters 116 (14), 147203, 2016 | 605 | 2016 |
Beyond skyrmions: Review and perspectives of alternative magnetic quasiparticles B Göbel, I Mertig, OA Tretiakov Physics Reports 895, 1-28, 2021 | 453 | 2021 |
Dynamics of domain walls in magnetic nanostrips OA Tretiakov, D Clarke, GW Chern, YB Bazaliy, O Tchernyshyov Physical Review Letters 100 (12), 127204, 2008 | 285 | 2008 |
Staggered Dynamics in Antiferromagnets by Collective Coordinates EG Tveten, A Qaiumzadeh, OA Tretiakov, A Brataas Physical Review Letters 110 (12), 127208, 2013 | 208 | 2013 |
Vortices in thin ferromagnetic films and the skyrmion number OA Tretiakov, O Tchernyshyov Physical Review B 75 (1), 012408, 2007 | 181 | 2007 |
Magnetic bimerons as skyrmion analogues in in-plane magnets B Göbel, A Mook, J Henk, I Mertig, OA Tretiakov Physical review B 99 (6), 060407, 2019 | 167 | 2019 |
Dynamics of a vortex domain wall in a magnetic nanostrip: Application of the collective-coordinate approach DJ Clarke, OA Tretiakov, GW Chern, YB Bazaliy, O Tchernyshyov Physical Review B 78 (13), 134412, 2008 | 163 | 2008 |
Spin torque nano-oscillators based on antiferromagnetic skyrmions L Shen, J Xia, G Zhao, X Zhang, M Ezawa, OA Tretiakov, X Liu, Y Zhou Applied Physics Letters 114 (4), 2019 | 138 | 2019 |
Antisymmetric magnetoresistance in van der Waals Fe3GeTe2/graphite/Fe3GeTe2 trilayer heterostructures S Albarakati, C Tan, ZJ Chen, JG Partridge, G Zheng, L Farrar, ... Science advances 5 (7), eaaw0409, 2019 | 125 | 2019 |
Current Driven Magnetization Dynamics in Ferromagnetic Nanowires with a Dzyaloshinskii-Moriya Interaction OA Tretiakov, A Abanov Physical Review Letters 105 (15), 157201, 2010 | 124 | 2010 |
Current-induced dynamics and chaos of antiferromagnetic bimerons L Shen, J Xia, X Zhang, M Ezawa, OA Tretiakov, X Liu, G Zhao, Y Zhou Physical review letters 124 (3), 037202, 2020 | 115 | 2020 |
Dynamics of the antiferromagnetic skyrmion induced by a magnetic anisotropy gradient L Shen, J Xia, G Zhao, X Zhang, M Ezawa, OA Tretiakov, X Liu, Y Zhou Physical Review B 98 (13), 134448, 2018 | 106 | 2018 |
Microscopic theory of spin-orbit torques in two dimensions IA Ado, OA Tretiakov, M Titov Physical Review B 95 (9), 094401, 2017 | 94 | 2017 |
Stability of skyrmion lattices and symmetries of quasi-two-dimensional chiral magnets U Güngördü, R Nepal, OA Tretiakov, K Belashchenko, AA Kovalev Physical Review B 93 (6), 064428, 2016 | 90 | 2016 |
Theory of the topological spin Hall effect in antiferromagnetic skyrmions: Impact on current-induced motion CA Akosa, OA Tretiakov, G Tatara, A Manchon Physical review letters 121 (9), 097204, 2018 | 81 | 2018 |
Holey topological thermoelectrics OA Tretiakov, A Abanov, J Sinova Applied Physics Letters 99 (11), 113110, 2011 | 81 | 2011 |
Stability and lifetime of antiferromagnetic skyrmions PF Bessarab, D Yudin, DR Gulevich, P Wadley, M Titov, OA Tretiakov Physical Review B 99 (14), 140411, 2019 | 73 | 2019 |
Antiferromagnetic skyrmion-based logic gates controlled by electric currents and fields X Liang, J Xia, X Zhang, M Ezawa, OA Tretiakov, X Liu, L Qiu, G Zhao, ... Applied Physics Letters 119 (6), 2021 | 69 | 2021 |
Spin-orbit torque switching of an antiferromagnetic metallic heterostructure S DuttaGupta, A Kurenkov, OA Tretiakov, G Krishnaswamy, G Sala, ... Nature communications 11 (1), 5715, 2020 | 69 | 2020 |