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Condensed Matter > Mesoscale and Nanoscale Physics

Title: From Local Spin Nematicity to Altermagnets: Footprints of Band Topology

Abstract: Altermagnets are crystallographic rotational symmetry breaking spin-ordered states, possessing a net zero magnetization despite manifesting Kramers non-degenerate bands. Here, we show that momentum-independent local spin nematic orders in monolayer, Bernal bilayer and rhombohedral trilayer graphene give rise to $p$-wave, $d$-wave and $f$-wave altermagnets, respectively, thereby inheriting topology of linear, quadratic and cubic free fermion band dispersions that are also described in terms of angular momentum $\ell=1,\; 2$ and $3$ harmonics in the reciprocal space. The same conclusions also hold inside a spin-triplet nematic superconductor, featuring Majorana altermagnets. Altogether, these findings highlight the importance of electronic band structure in identifying such exotic magnetic orders in quantum materials. We depict the effects of in-plane magnetic fields on altermagnets, and propose novel spin-disordered alter-valleymagnets in these systems.
Comments: 6 Pages and 1 Figure: Modified Title, Streamlined Presentation (Supplemental Material as ancillary file)
Subjects: Mesoscale and Nanoscale Physics (cond-mat.mes-hall); Strongly Correlated Electrons (cond-mat.str-el); Superconductivity (cond-mat.supr-con)
Cite as: arXiv:2403.14620 [cond-mat.mes-hall]
  (or arXiv:2403.14620v2 [cond-mat.mes-hall] for this version)

Submission history

From: Bitan Roy [view email]
[v1] Thu, 21 Mar 2024 17:59:32 GMT (783kb,D)
[v2] Tue, 9 Apr 2024 03:16:04 GMT (2326kb,AD)

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