Dominant superconducting correlations in a Luttinger liquid induced by spin fluctuations
Peer reviewed, Journal article
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Date
2022Metadata
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Original version
Physical review B (PRB). 2022, 106 (24), . https://doi.org/10.1103/PhysRevB.106.L241102Abstract
We study spin-fluctuation mediated divergent superconducting fluctuations in a Luttinger liquid proximity-coupled to a spin chain. Our study provides insight into how spin fluctuations can induce superconductivity in a strongly correlated non-Fermi liquid with repulsive electronic interactions only. The electrons in the system are governed by the Extended Hubbard Hamiltonian and are coupled to a chain of localized spins modeled by the spin- 1 2 X X Hamiltonian. Using a multichannel Luttinger liquid approach, we determine the phase diagram of the metal chain. We find that spin-polarized triplet superconducting correlations persist for repulsive electronic interactions for sufficiently large interchain couplings. Dominant superconducting correlations in a Luttinger liquid induced by spin fluctuations