The fate of $p$-wave spin polarization in helimagnets with Rashba spin-orbit coupling
Abstract
It has recently been realized that magnetic systems with coplanar magnetic order that are invariant under the combined operation of time-reversal and translation with half a unit cell feature energy bands with a symmetry-protected p-wave spin polarization. Such -wave magnets are a sought-after spin analogy of unconventional triplet superconducting pairing and show promise for use in spintronics. Metallic helimagnets provide a realization of -wave magnetism, but such order often occurs in systems lacking inversion symmetry so that Rashba spin-orbit interactions can be prominent. An important question is therefore how the magnitude and the existence of -wave spin polarization is affected by Rashba spin-orbit interaction. Here, we prove that while the -wave symmetry of the spin-polarized bands is strictly speaking removed by such spin-orbit interactions in helimagnets unless the period of the helix is fine-tuned, the actual quantitative deviation from -wave symmetry is extremely weak unless the period of the helix is only a few lattice sites. Thereafter, we show that the -wave magnetism becomes completely robust in pairs of antiferromagnetically coupled helices. More precisely, the -wave spin-polarization of the bands then appears regardless of the periodicity and regardless of the strength of the spin-orbit interactions. This shows that antiferromagnetically coupled helimagnetic chains produce robust -wave spin polarization free of fine-tuning requirements, making them attractive for potential spintronic applications.
Keywords
Cite
@article{arxiv.2412.12246,
title = {The fate of $p$-wave spin polarization in helimagnets with Rashba spin-orbit coupling},
author = {Erik Wegner Hodt and Hendrik Bentmann and Jacob Linder},
journal= {arXiv preprint arXiv:2412.12246},
year = {2025}
}