Thomas Winyard
Thomas Winyard
Verified email at leeds.ac.uk
Title
Cited by
Cited by
Year
Broken planar Skyrmions—statics and dynamics
P Jennings, T Winyard
Journal of High Energy Physics 2014 (1), 122, 2014
122014
Non-London electrodynamics in a multiband London model: Anisotropy-induced nonlocalities and multiple magnetic field penetration lengths
M Silaev, T Winyard, E Babaev
Physical Review B 97 (17), 174504, 2018
102018
Baby Skyrmions in AdS
M Elliot-Ripley, T Winyard
Journal of High Energy Physics 2015 (9), 9, 2015
82015
Hierarchies of length-scale based typology in anisotropic -wave multiband superconductors
T Winyard, M Silaev, E Babaev
Physical Review B 99 (6), 064509, 2019
52019
Hyperbolic Skyrmions
T Winyard
arXiv preprint arXiv:1503.08522, 2015
52015
Skyrmion formation due to unconventional magnetic modes in anisotropic multiband superconductors
T Winyard, M Silaev, E Babaev
Physical Review B 99 (2), 024501, 2019
42019
Chiral -wave superconductors have complex coherence and magnetic field penetration lengths
M Speight, T Winyard, E Babaev
Physical Review B 100 (17), 174514, 2019
32019
Skyrmions and spin waves in frustrated ferromagnets at low applied magnetic field
M Speight, T Winyard
Physical Review B 101 (13), 134420, 2020
22020
Skyrmion and Baby Skyrmion Formation from Domain Walls
T Winyard
arXiv preprint arXiv:1507.07482, 2015
12015
Ring solitons and soliton sacks in imbalanced fermionic systems
M Barkman, A Samoilenka, T Winyard, E Babaev
arXiv preprint arXiv:2005.03738, 2020
2020
Intervortex forces in competing-order superconductors
M Speight, T Winyard
arXiv preprint arXiv:2004.13171, 2020
2020
Magnetic signatures of domain walls in and superconductors: Observability and what that can tell us about the superconducting order parameter
A Benfenati, M Barkman, T Winyard, A Wormald, M Speight, E Babaev
Physical Review B 101 (5), 054507, 2020
2020
The Skyrme Model: Curved Space, Symmetries and Mass
T Winyard
Durham University, 2016
2016
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Articles 1–13