Vortex ratchet reversal at fractional matching fields in kagom\'e-like array with symmetric pinning centers
D. Perez de Lara, A. Alija, E. M. Gonzalez, M. Velez, J. I. Martin, J., L. Vicent

TL;DR
This study investigates vortex dynamics in kagomé-like Ni dot arrays embedded in Nb films, revealing fractional matching fields, anisotropic magnetoresistance, and a current-dependent vortex ratchet effect caused by array asymmetry.
Contribution
It demonstrates the vortex ratchet reversal at fractional matching fields in a kagomé-like array with symmetric pinning centers, highlighting anisotropic behavior and current-induced polarity changes.
Findings
Fractional matching fields observed below the first integer matching field.
Anisotropic magnetoresistance curves depend on vortex lattice orientation.
Current injection induces a vortex ratchet effect with polarity reversal.
Abstract
Arrays of Ni nanodots embedded in Nb superconducting films have been fabricated by sputtering and electron beam lithography techniques. The arrays are periodic triangular lattices of circular Ni dots arranged in a kagom\'e-like pattern with broken reflection symmetry. Relevant behaviors are found in the vortex lattice dynamics : i) At values lower than the first integer matching field, several fractional matching fields are present when the vortex lattice moves parallel or perpendicular to the reflection symmetry axis of the array showing a clear anisotropic character in the magnetoresistance curves, ii) injecting an ac current perpendicular to the reflection symmetry axis of the array yields an unidirectional motion of the vortex lattice (ratchet effect) as a result of the interaction between the whole vortex lattice and the asymmetric lattice of dots, iii) increasing the input current…
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