Composite Pairings in Chirally Stabilized Critical Fluids
arXiv:cond-mat/0001072 · doi:10.1103/PhysRevB.62.61
Abstract
We study a one-dimensional electron gas in a special antiferromagnetic environment made by two spin-1/2 Heisenberg chains and the one-dimensional two-channel Kondo-Heisenberg lattice away from half-filling. These models flow to an intermediate fixed point which belongs to the universality class of chirally stabilized liquids. Using a Toulouse point approach, the universal properties of the models are determined as well as the identification of the leading instabilities. It is shown that these models exhibit a non-Fermi liquid behavior with strong enhanced composite pairing correlations.
4 pages
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Cited by in corpus (6)
- Criticality in self-dual sine-Gordon models
- Inhomogeneous superconducting phases in the frustrated Kondo-Heisenberg chain
- Magnetism and superconductivity in underscreened Kondo chains
- Pairing and Density Correlations of Stripe Electrons in a Two-Dimensional Antiferromagnet
- Topological ground state degeneracy of the two-channel Kondo lattice
- Higher-Dimensional Chirally Stabilized Fixed Points and Their Deformations