paper

Magnetization induced by a nonlinear response to temperature gradient in , and altermagnets

arXiv:2604.05454

Abstract

It is a highly nontrivial question whether magnetization is induced by a nonlinear response to a temperature gradient in systems where the linear response is forbidden by inversion symmetry. In this work, we address this issue and provide explicit examples demonstrating that such a response can indeed arise. The spin-split electron band structures induced by -wave, -wave, -wave altermagnets are characterized by around the band bottom, where and , respectively. In contrast, those of the corresponding -wave, -wave, -wave altermagnets are described by . We show that a finite magnetization is induced in the -wave, -wave, -wave altermagnets under a second-order nonlinear response to a temperature gradient when the temperature gradient is along either the or direction, whereas no such response occurs in the -wave, -wave and -wave altermagnets. We also study the case where the direction of the temperature gradient is arbitrary. In this case, a finite magnetization is induced also in -wave altermagnets but not in -wave and -wave altermagnets. We discuss the difference in physics between the -wave and -wave altermagnets with based on the tight-binding model.

8 pages, 3 figures

Magnetization induced by a nonlinear response to temperature gradient in $d^{\prime }$, $g^{\prime }$ and $i^{\prime }$ altermagnets · wovepaper