Physicsnpj Computational Materials
Toward room-temperature nanoscale skyrmions in ultrathin films
A. S. Varentcova, S. V. Malottki, et al.
This groundbreaking research conducted by Anastasiia S. Varentcova, Stephan von Malottki, Maria N. Potkina, Grzegorz Kwiatkowski, Stefan Heinze, and Pavel F. Bessarab unveils the remarkable stability of nanoscale skyrmions in ultrathin ferromagnetic films at room temperature. Discover how manipulating magnetic interactions can lead to skyrmions with lifetimes extending to years, forever changing the landscape of magnetic technologies.
Related Publications
Explore these studies to deepen your understanding
Adjacent work that informs or extends this paper's methodology and findings.
Chemistry
Direct demonstration of triplet excimer in purely organic room temperature phosphorescence through rational molecular design
Z. Liu, Y. Tian, et al.
Physics
Hong-Ou-Mandel interference of single-photon-level pulses stored in independent room-temperature quantum memories
S. Gera, C. Wallace, et al.
Physics
Dipolar skyrmions and antiskyrmions of arbitrary topological charge at room temperature
M. Hassan, S. Koraltan, et al.
Engineering and Technology
Stepwise taming of triplet excitons via multiple confinements in intrinsic polymers for long-lived room-temperature phosphorescence
L. Gao, J. Huang, et al.

