Spin relaxation in $X$-wave magnets with $X=p, d, f, g, i$
Abstract
Spin relaxation results in the spin decoherence and a finite spin lifetime, which are detrimental to spintronic devices. To achieve a long spin lifetime desirable for spintronic devices, elucidating the spin relaxation mechanism and factors influencing the spin lifetime is of vital importance. Here, we investigate the spin relaxation in -wave magnets () with Rashba spin-orbit coupling within the framework of D'yakonov-Perel' mechanism. We calculate the general matrix of the spin relaxation time for an arbitrary N\'eel vector direction of the -wave magnet. As an illustration, we study the spin relaxation for the N\'eel vector along the direction. It is found that the reciprocal spin-relaxation-time matrices are anisotropic and diagonal for the -, -, - and -wave magnets. For the -wave magnet, we derive the analytical expressions for the temporal evolution of spins. Moreover, the spin relaxation rate is proportional to the momentum relaxation time, Rashba and altermagnetic spin-split strengths for all -wave magnets. Our results shine more light on the fundamental understanding of the spin relaxation mechanism in -wave magnets.
Keywords
Cite
@article{arxiv.2607.17807,
title = {Spin relaxation in $X$-wave magnets with $X=p, d, f, g, i$},
author = {Lijie Liu and Mingbo Dou and Xu Chen and Xianjie Wang and M. Ye. Zhuravlev and A. V. Nikolaev and L. L. Tao},
journal= {arXiv preprint arXiv:2607.17807},
year = {2026}
}