Floquet engineering spin triplet states in unconventional magnets
Abstract
We consider unconventional magnets with and without spin-singlet -wave superconductivity and demonstrate the emergence of spin triplet states due to light drives. In particular, we find that a high-frequency linearly polarized light drive induces a spin-triplet density in -wave altermagnets which does not exist in the static regime and can directly reveal the strength of the altermagnetic field. In this high-frequency regime, we also show that linearly polarized light enables the formation of odd-frequency spin-triplet superconducting correlations possessing -wave and -wave parities, which can be controlled by the light drive and accessed by measuring the spin density. Moreover, for low-frequency linearly and circularly polarized light drives, we obtain that the types of superconducting correlations are broadened due to the presence of Floquet bands, enabling spin-triplet pairs in - and -wave unconventional magnets, which are absent in the undriven phase.
Cite
@article{arxiv.2505.20205,
title = {Floquet engineering spin triplet states in unconventional magnets},
author = {Pei-Hao Fu and Sayan Mondal and Jun-Feng Liu and Yukio Tanaka and Jorge Cayao},
journal= {arXiv preprint arXiv:2505.20205},
year = {2026}
}
Comments
11 + 18 pages, 4 + 4 figures