Exact overlaps in the Kondo problem

It is well known that the ground states of a Fermi liquid with and without a single Kondo impurity have an overlap that decays as a power law of the system size, expressing the Anderson orthogonality catastrophe. Ground states with two different values of the Kondo couplings have, however, a finite...

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Veröffentlicht in:Physical review letters 2015-02, Vol.114 (8), p.080601-080601, Article 080601
Hauptverfasser: Lukyanov, Sergei L, Saleur, Hubert, Jacobsen, Jesper L, Vasseur, Romain
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Sprache:eng
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Zusammenfassung:It is well known that the ground states of a Fermi liquid with and without a single Kondo impurity have an overlap that decays as a power law of the system size, expressing the Anderson orthogonality catastrophe. Ground states with two different values of the Kondo couplings have, however, a finite overlap in the thermodynamic limit. This overlap, which plays an important role in quantum quenches for impurity systems, is a universal function of the ratio of the corresponding Kondo temperatures, which is not accessible using perturbation theory or the Bethe ansatz. Using a strategy based on the integrable structure of the corresponding quantum field theory, we propose an exact formula for this overlap, which we check against extensive density matrix renormalization group calculations.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.114.080601