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Altermagnetism and superconductivity in a multiorbital t-J model

Authors :
Bose, Anjishnu
Vadnais, Samuel
Paramekanti, Arun
Publication Year :
2024

Abstract

Motivated by exploring doped multi-orbital antiferromagnets (AFMs) and altermagnets (ALMs) we explore minimal $t$-$J$ models on the square-octagon lattice which favor such collinear magnetic orders in the regime where spin exchange dominates. While the AFM order breaks translational and time-reversal symmetries, the ALM state (equivalently, a `$d$-wave ferromagnet') features multipolar order which separately breaks time-reversal and crystal rotation symmetries but preserves their product leading to spin-split bands with zero net magnetization. We study the mean field phase diagram of these models as we vary doping and interactions, discovering regimes of weak and strong ALM order, superconductivity including uniform $s$-wave and $d$-wave pairing states, incipient $d$-wave pair density wave order, and phases with coexisting singlet-triplet pairing and AFM/ALM orders which appear unstable to phase separation and could host stripe order with longer-range interactions. Our results may be relevant to doping or pressure studies of multiorbital ALM materials.<br />Comment: 14 pages, 13 figures

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2403.17050
Document Type :
Working Paper