Critical Co Thickness for Magnetic-Field-Induced Reorientation of the NiO N茅el Vector

2026 IEEE International Magnetic Conference - Short Papers (INTERMAG Short Papers) IEEE (2026) 1-2

Authors:

Dirk Backes, Emily Heppell, Sean Langridge, Gerrit van der Laan, Thorsten Hesjedal

Quasi-1D Spin Textures: From Chiral Soliton Lattice to Fan State

(2026)

Authors:

M Winter, A Pignedoli, As Sukhanov, M Azhar, A Tahn, B Achinuq, Jr Bollard, V Ukleev, C Luo, F Radu, S Wintz, M Weigand, A Mistonov, P Vir, J Geck, C Felser, G van der Laan, T Hesjedal, K Everschor-Sitte, B Rellinghaus, Mc Rahn

Reconstruction of magnon eigenfunctions by X-ray magnetic vector chronoscopy

Nature Nanotechnology Springer Nature (2026)

Authors:

Haonan Jin, Yuqiang Wang, Xinyi He, Jingyi Chen, Ethan L Arnold, Gerrit van der Laan, Thorsten Hesjedal, Guoqiang Yu, Shilei Zhang

Abstract:

The collective precession of magnetization manifests itself as magnon modes. These modes are governed by complex-valued vectorial eigenfunctions, which have remained experimentally challenging to observe. Here we introduce X-ray magnetic vector chronoscopy (XMVC), a time-resolved resonant scattering method that reconstructs the full magnetization dynamics with angular resolution of 0.1掳 (卤0.01掳). Applied to a synthetic antiferromagnetic multilayer (Si/NiFe (8鈥塶m)/Ru (0.8鈥塶m)/CoFeB (5.5鈥塶m)), XMVC enables magnon state tomography, by directly measuring the nanoscale vectorial eigenfunctions of hybridized modes arising from magnon鈥搈agnon coupling. This approach provides full access to the system鈥檚 non-Hermitian Hamiltonian, revealing the complex-valued coupling strengths and non-orthogonal eigenbases. These results establish XMVC as an experimental platform for studying nanoscale spin systems by extracting the eigenfunctions of the system.聽

Interfacial Coexistence of Superconductivity and Magnetism in NbN/Ti/MnBi2Te4 Heterostructures

ACS Applied Materials & Interfaces American Chemical Society (ACS) 18 (2026) 20829-20837

Authors:

Yanjiang Wang, Peng Dong, Xiaohui Zeng, Chen Xu, Jianjun Xiao, Yang Zhao, Jinghui Wang, Yueshen Wu, Xiang Zhou, Yanfeng Guo, Yulin Chen, Thorsten Hesjedal, Jun Li

Abstract:

Magnetic/superconducting heterostructures represent a frontier in condensed matter physics, offering pathways to realize unconventional pairing mechanisms such as topological superconductivity, spin-triplet pairing, and Majorana zero modes for fault-tolerant quantum computing. In this work, we integrate the magnetic van der Waals material MnBi2Te4 (MBT) with a superconducting NbN thin film, achieving ultralow-disorder interfaces through Ti buffer layer engineering. Temperature- and field-dependent critical currents, extracted from differential resistance spectra, reveal robust coupling between the MnBi2Te4 and the superconducting order of NbN, enabling proximity-induced superconductivity within MnBi2Te4. Notably, the proximity-induced critical currents remain invariant under in-plane field rotation, in contrast to the anisotropic response observed in pristine NbN. Moreover, the hysteretic behavior observed in the interfacial magnetoresistance curves confirms the proximity-induced spin polarization at the MBT interface, which is consistent with Andreev reflection results. These findings demonstrate a platform for fabricating high-quality heterointerfaces and enable targeted exploration of exotic quantum states.

Manipulation of skyrmion motion by magnetic field gradients

University of Oxford (2026)

Abstract:

Full size CCD camera videos for https://www.nature.com/articles/s41467-018-04563-4