Matches in SemOpenAlex for { <https://semopenalex.org/work/W1863704805> ?p ?o ?g. }
- W1863704805 abstract "We study the electronic structure of vortex core states of FeSe superconductors based on a ${mathrm{t}}_{2g}$ three-orbital model by solving the Bogoliubov-de Gennes (BdG) equation self-consistently. The orbital-resolved vortex core states of different pairing symmetries manifest themselves as distinguishable structures due to different quasiparticle wave functions. The obtained vortices are classified in terms of the invariant subgroups of the symmetry group of the mean-field Hamiltonian in the presence of a magnetic field. Isotropic $s$ and anisotropic $s$-wave vortices have ${G}_{5}$ symmetry for each orbital, whereas ${d}_{{x}^{2}ensuremath{-}{y}^{2}}$-wave vortices show ${G}_{6}^{*}$ symmetry for ${d}_{xz/yz}$ orbitals and ${G}_{5}^{*}$ symmetry for ${d}_{xy}$ orbital. In the case of ${d}_{{x}^{2}ensuremath{-}{y}^{2}}$-wave vortices, hybridized-pairing between ${d}_{xz}$ and ${d}_{yz}$ orbitals gives rise to a relative phase difference in terms of gauge transformed pairing order parameters between ${d}_{xz/yz}$ and ${d}_{xy}$ orbitals, which is essentially caused by a transformation of co-representation of ${G}_{5}^{*}$ and ${G}_{6}^{*}$ subgroups. The calculated local density of states (LDOS) of ${d}_{{x}^{2}ensuremath{-}{y}^{2}}$-wave vortices shows a qualitatively similar pattern with the experimental results. The phase difference of $frac{ensuremath{pi}}{4}$ between ${d}_{xz/yz}$ and ${d}_{xy}$ orbital-resolved ${d}_{{x}^{2}ensuremath{-}{y}^{2}}$-wave vortices can be verified by further experimental observation." @default.
- W1863704805 created "2016-06-24" @default.
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- W1863704805 date "2015-06-15" @default.
- W1863704805 modified "2023-10-01" @default.
- W1863704805 title "Orbital-resolved vortex-core states in FeSe superconductors: A calculation based on a three-orbital model" @default.
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- W1863704805 doi "https://doi.org/10.1103/physrevb.91.214509" @default.
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