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Unconventional symmetry of vortex core in Abrikosov lattice for systems with anisotropic Fermi surface

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Kornev A. et al. Unconventional symmetry of vortex core in Abrikosov lattice for systems with anisotropic Fermi surface // Mesoscience & Nanotechnology. 2026. Vol. 1. No. 4. 01-04001
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Kornev A., Neverov V., Krasavin A., Stolyarov V. Unconventional symmetry of vortex core in Abrikosov lattice for systems with anisotropic Fermi surface // Mesoscience & Nanotechnology. 2026. Vol. 1. No. 4. 01-04001
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TY - JOUR
UR - https://jmsn.press/publications/01-04001
TI - Unconventional symmetry of vortex core in Abrikosov lattice for systems with anisotropic Fermi surface
T2 - Mesoscience & Nanotechnology
AU - Kornev, Artem
AU - Neverov, Vyacheslav
AU - Krasavin, Andrey
AU - Stolyarov, Vasily
PY - 2026
DA - 2026/09/10
PB - Treatise LLC
SP - 01-04001
IS - 4
VL - 1
ER -
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@article{2026_Kornev,
author = {Artem Kornev and Vyacheslav Neverov and Andrey Krasavin and Vasily Stolyarov},
title = {Unconventional symmetry of vortex core in Abrikosov lattice for systems with anisotropic Fermi surface},
journal = {Mesoscience & Nanotechnology},
year = {2026},
volume = {1},
publisher = {Treatise LLC},
month = {Sep},
url = {https://jmsn.press/publications/01-04001},
number = {4}
}
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Kornev, Artem, et al. “Unconventional symmetry of vortex core in Abrikosov lattice for systems with anisotropic Fermi surface.” Mesoscience & Nanotechnology, vol. 1, no. 4, Sep. 2026, pp. 01-04001. https://jmsn.press/publications/01-04001.
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Keywords

Abrikosov vortex lattice
Bogoliubov–de Gennes equations
Caroli–de Gennes–Matricon states
Fermi surface anisotropy
Zero-bias conductance

Abstract

We present microscopic calculations of fourfold-shaped Abrikosov vortices arising in a square crystal lattice. By solving the Bogoliubov–de Gennes equations, we demonstrate that as the Fermi surface is tuned from circular to square-like via the chemical potential, the Caroli–de Gennes–Matricon vortex-core states evolve from radially symmetric profiles into a pronounced fourfold-shaped pattern. We additionally reveal a simultaneous presence of C4 symmetry from the Fermi surface and C6 symmetry from the Abrikosov lattice. As a result, we anticipate unconventional symmetry features in the spatial pattern of zero-bias conductance in materials with anisotropic Fermi surfaces.C