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Chiral Liquids in 1-d: A New Class of NFL-Fixed Points
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Chiral Liquids in 1-d: A New Class of NFL-Fixed Points
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We identify a non Fermi Liquid (NFL) class of fixed points describing the infrared behaviour of interacting chiral fermions in one dimension. The thermodynamic properties and asymptotic correlation functions are characterized by universal exponents, which we determine by means of conformal and Bethe-Ansatz techniques. The mechanism leading to the breakdown of Fermi-Liquid theory is quite general and can be expected to be realized in systems with broken T-invariance. As an example we study the edge states of interacting QHE systems. We calculate the universal frequency dependence of the spin conductance in these systems as well as the NMR response.
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Cited by 1 Pith paper
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Non-Abelian Thirring model at large $N$
In the large-c_G 't Hooft limit of the bosonized non-Abelian Thirring model, the beta function is β_λ̃ = -λ̃²/2 to quartic order, so no additional 1/N fixed point exists.
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