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Magnetic skyrmions
Credit: TH

Professor Thorsten Hesjedal FInstP

Professor of Condensed Matter Physics

Research theme

  • Quantum materials

Sub department

  • Condensed Matter Physics

Research groups

  • Topological Magnetism Group
Thorsten.Hesjedal@physics.ox.ac.uk
  • About
  • Publications

Coherent transfer of spin angular momentum by evanescent spin waves within antiferromagnetic NiO

(2019)

Authors:

Maciej Dabrowski, Takafumi Nakano, David M Burn, Andreas Frisk, David G Newman, Christoph Klewe, Qian Li, Mengmeng Yang, Padraic Shafer, Elke Arenholz, Thorsten Hesjedal, Gerrit van der Laan, Zi Q Qiu, Robert J Hicken

Helical magnetic ordering in thin FeGe membranes

PHYSICAL REVIEW B 100:18 (2019) ARTN 184403

Authors:

DM Burn, SL Zhang, S Wang, HF Du, G van der Laan, T Hesjedal

Tailoring the topological surface state in ultrathin $\alpha$-Sn (111) films

(2019)

Authors:

Victor A Rogalev, Felix Reis, Florian Adler, Maximilian Bauernfeind, Jonas Erhardt, Andr茅 Kowalewski, Markus R Scholz, Lenart Dudy, Liam B Duffy, Thorsten Hesjedal, Moritz Hoesch, Gustav Bihlmayer, J枚rg Sch盲fer, Ralph Claessen

Diameter-independent skyrmion Hall angle in the plastic flow regime observed in chiral magnetic multilayers

(2019)

Authors:

Katharina Zeissler, Simone Finizio, Craig Barton, Alexandra Huxtable, Jamie Massey, J枚rg Raabe, Alexandr V Sadovnikov, Sergey A Nikitov, Richard Brearton, Thorsten Hesjedal, Gerrit van der Laan, Mark C Rosamond, Edmund H Linfield, Gavin Burnell, Christopher H Marrows

A low-temperature Kerr effect microscope for the simultaneous magneto-optic and magneto-transport study of magnetic topological insulators

Measurement Science and Technology IOP Publishing 30:12 (2019) 125201

Authors:

J Liu, A Singh, J Llandro, Liam Duffy, Stanton, Holmes, MJ Applegate, Phillips, Thorsten Hesjedal, CHW Barnes

Abstract:

Magneto-optical Kerr effect (MOKE) microscopy is a surface-sensitive probe of magnetisation with micron-sized lateral resolution. Here, we present a low-temperature, focused polar MOKE microscope for the simultaneous magnetooptical and magneto-transport measurements, which has a temperature range of 1.6-300 K and is equipped with a magnet capable of delivering a field of up to 9 T. In this microscope, all optical components are integrated in a free-standing probe, allowing for the straightforward incorporation into many non-optical cryostat systems. Two-dimensional magnetisation scans on patterned ferromagnetic [CoFeB/Pt]n films demonstrate a magnetisation sensitivity of 10 碌rad (Kerr angle) and a spatial resolution of 2.2 碌m. The combination of optical and electrical measurements provides complementary temperature-dependent information, as demonstrated by the study of magnetic topological insulator thin films with out-of-plane magnetic anisotropy. Using this complementary approach, we study the effects of a secondary phase in Cr and V co-doped Sb2Te3 thin films, which show a combination of weak antilocalization and anisotropic magnetoresistance effects above 70 K. Our results highlight the virtue of MOKE and electrical transport to optimise exotic topological magnetic materials, paving the way for energy-efficient spintronic devices.

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