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Hauptverfasser: Duzgun, A., Nisoli, C., Reichhardt, C. J. O., Reichhardt, C.
Format: Preprint
Veröffentlicht: 2021
Schlagworte:
Online-Zugang:https://arxiv.org/abs/2112.04562
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author Duzgun, A.
Nisoli, C.
Reichhardt, C. J. O.
Reichhardt, C.
author_facet Duzgun, A.
Nisoli, C.
Reichhardt, C. J. O.
Reichhardt, C.
contents Using continuum simulations, we show that under a sinusoidal electric field, liquid crystal skyrmions undergo periodic shape oscillations which produce controlled directed motion. The speed of the skyrmion is non-monotonic in the frequency of the applied field, and exhibits multiple reversals of the motion as a function of changing frequency. We map out the dynamical regime diagram of the forward and reverse motion for two superimposed ac driving frequencies, and show that the reversals and directed motion can occur even when only a single ac driving frequency is present. Using pulsed ac driving, we demonstrate that the motion arises due to an asymmetry in the relaxation times of the skyrmion shape. We discuss the connection between our results and ratchet effects observed in systems without asymmetric substrates.
format Preprint
id arxiv_https___arxiv_org_abs_2112_04562
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Directed Motion of Liquid Crystal Skyrmions With Oscillating Fields
Duzgun, A.
Nisoli, C.
Reichhardt, C. J. O.
Reichhardt, C.
Soft Condensed Matter
Using continuum simulations, we show that under a sinusoidal electric field, liquid crystal skyrmions undergo periodic shape oscillations which produce controlled directed motion. The speed of the skyrmion is non-monotonic in the frequency of the applied field, and exhibits multiple reversals of the motion as a function of changing frequency. We map out the dynamical regime diagram of the forward and reverse motion for two superimposed ac driving frequencies, and show that the reversals and directed motion can occur even when only a single ac driving frequency is present. Using pulsed ac driving, we demonstrate that the motion arises due to an asymmetry in the relaxation times of the skyrmion shape. We discuss the connection between our results and ratchet effects observed in systems without asymmetric substrates.
title Directed Motion of Liquid Crystal Skyrmions With Oscillating Fields
topic Soft Condensed Matter
url https://arxiv.org/abs/2112.04562