Supercurrent distribution in real-space and anomalous paramagnetic response in a superconducting quasicrystal
Распределение сверхтока в реальном пространстве и аномальный парамагнитный отклик в сверхпроводящем квазикристалле
2023-11-21
SCID: 54.1/hs42fksa
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Ammann-Beenker quasicrystalBogoliubov-de Gennes mean-fieldattractive Hubbard modelparamagnetic and diamagnetic currentssupercurrent distribution
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Abstract (AI)
We theoretically study the real-space distribution of the supercurrent that flows under a uniform vector potential in a two-dimensional quasiperiodic structure. This is done by considering the attractive Hubbard model on the quasiperiodic Ammann-Beenker structure and studying the superconducting phase within the Bogoliubov-de Gennes mean-field theory. Decomposing the local supercurrent into the paramagnetic and diamagnetic components, we numerically investigate their dependencies on average electron density, temperature, and the angle of the applied vector potential. We find that the diamagnetic current locally violates the current conservation law, necessitating compensation from the paramagnetic current, even at zero temperature. The paramagnetic current shows exotic behaviors in the quasiperiodic structure, such as local currents, which are oriented transversally or reversely to that of the applied vector potential.
Key Findings
1
In the quasiperiodic structure the paramagnetic current exhibits exotic behaviors, including local currents oriented transversally or opposite to the applied vector potential.
2
The diamagnetic current locally violates current conservation, requiring compensation by the paramagnetic current even at zero temperature.
3
The local supercurrent can be decomposed into paramagnetic and diamagnetic components, and their dependencies on average electron density, temperature, and vector-potential angle were numerically investigated.
4
Using the attractive Hubbard model on the Ammann-Beenker quasiperiodic structure with BdG mean-field theory, the real-space supercurrent distribution under a uniform vector potential was characterized.
Research Object
Superconducting quasicrystal based on the two-dimensional quasiperiodic Ammann-Beenker lattice with attractive Hubbard-model pairing
Research Subject
Real-space distribution and decomposition of the supercurrent (paramagnetic and diamagnetic components) under a uniform vector potential, including their dependence on electron density, temperature, and vector-potential angle and the anomalous local/ transverse/ reversed paramagnetic responses
Publication Details
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2023-11-21
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