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Nodal-line pairing with 1D-3D coupled Fermi surfaces: A model motivated by Cr-based superconductors

Gideon Wachtel, Yong Baek Kim

DOI 10.1103/PhysRevB.94.104522 · Physical Review B

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Abstract

Motivated by the recent discovery of a new family of chromium-based superconductors, we consider a two-band model, where a band of electrons dispersing only in one direction interacts with a band of electrons dispersing in all three directions. Strong 2kf density fluctuations in the one-dimensional band induces attractive interactions between the three-dimensional electrons, which, in turn, makes the system superconducting. Solving the associated Eliashberg equations, we obtain a gap function which is peaked at the “poles” of the three-dimensional Fermi sphere, and decreases towards the “equator.” When strong enough local repulsion is included, the gap actually changes sign around the equator and nodal rings are formed. These nodal rings manifest themselves in several experimentally observable quantities, some of which resemble unconventional observations in the newly discovered superconductors which motivated this work.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
K2Cr3As3

Archive — visibility unverified

Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula.

—Pressure not reportedunknown
Rb2Cr3As3

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Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula.

—Pressure not reportedunknown
Cs2Cr3As3

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Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula.

—Pressure not reportedunknown

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