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Archimedean Screw in Driven Chiral Magnets

Mesoscale and Nanoscale Physics 2021-11-10 v4 Strongly Correlated Electrons

Abstract

In chiral magnets a magnetic helix forms where the magnetization winds around a propagation vector q\mathbf{q}. We show theoretically that a magnetic field B(t)q\mathbf{B}_{\perp}(t) \perp \mathbf{q}, which is spatially homogeneous but oscillating in time, induces a net rotation of the texture around q\mathbf{q}. This rotation is reminiscent of the motion of an Archimedean screw and is equivalent to a translation with velocity vscrewv_{\text{screw}} parallel to q\mathbf{q}. Due to the coupling to a Goldstone mode, this non-linear effect arises for arbitrarily weak B(t)\mathbf{B}_{\perp}(t) with vscrewB2v_{\text{screw}} \propto |\mathbf{B}_{\perp}|^2 as long as pinning by disorder is absent. The effect is resonantly enhanced when internal modes of the helix are excited and the sign of vscrewv_{\text{screw}} can be controlled either by changing the frequency or the polarization of B(t)\mathbf{B}_{\perp}(t). The Archimedean screw can be used to transport spin and charge and thus the screwing motion is predicted to induce a voltage parallel to q\mathbf{q}. Using a combination of numerics and Floquet spin wave theory, we show that the helix becomes unstable upon increasing B\mathbf{B}_{\perp} forming a `time quasicrystal' which oscillates in space and time for moderately strong drive.

Keywords

Cite

@article{arxiv.2012.11548,
  title  = {Archimedean Screw in Driven Chiral Magnets},
  author = {Nina del Ser and Lukas Heinen and Achim Rosch},
  journal= {arXiv preprint arXiv:2012.11548},
  year   = {2021}
}

Comments

12 pages, 9 figures. Supplementary: 7 pages, 1 figure. V2: added references, added videos showing dynamics of driven system. V3: corrected mistake in Sec. VI: transport, and eq. F7 in App.F. In the limit $v_F\tau \ll q^{-1}$ current grows as $\tau^2$, rather than being independent of $\tau$ as previously claimed. Changes in v4: minor revisions following referee recommendations; typos corrected

R2 v1 2026-06-23T21:09:16.446Z