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JOURNALS // Journal of Statistical Mechanics: Theory and Experiment // Archive

J. Stat. Mech., 2012, Volume 2012, Number 9, 9001, 33 pp. (Mi jsm5)

This article is cited in 83 papers

Form factor approach to dynamical correlation functions in critical models

N. Kitaninea, K. K. Kozlowskia, J. M. Mailletb, N. A. Slavnovc, V. Terrasb

a IMB, UMR 5584 du CNRS, Université de Bourgogne, France
b Laboratoire de Physique, UMR 5672 du CNRS, ENS Lyon, France
c Steklov Mathematical Institute, Moscow, Russia

Abstract: We develop a form factor approach to the study of dynamical correlation functions of quantum integrable models in the critical regime. As an example, we consider the quantum non-linear Schrödinger model. We derive the long-distance/long-time asymptotic behavior of various two-point functions of this model. We also compute edge exponents and amplitudes characterizing the power-law behavior of dynamical response functions on the particle–hole excitation thresholds. These last results confirm predictions based on the non-linear Luttinger liquid method. Our results rely on a first principles derivation, based on a microscopic analysis of the model, without invoking, at any stage, any correspondence with a continuous field theory. Furthermore, our approach only makes use of certain general properties of the model, so that it should be applicable, possibly with minor modifications, to a wide class of (not necessarily integrable) gapless one-dimensional Hamiltonians.

Received: 25.06.2012
Accepted: 02.08.2012

Language: English

DOI: 10.1088/1742-5468/2012/09/P09001



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