Electrostatic solution of massless quenches in Luttinger liquids

Author:

Ruggiero Paola1,Calabrese Pasquale234,Giamarchi Thierry5,Foini Laura6

Affiliation:

1. King's College London

2. Abdus Salam International Centre for Theoretical Physics

3. INFN Trieste

4. International School for Advanced Studies

5. University of Geneva

6. L'Institut de physique théorique

Abstract

The study of non-equilibrium dynamics of many-body systems after a quantum quench received a considerable boost and a deep theoretical understanding from the path integral formulation in imaginary time. However, the celebrated problem of a quench in the Luttinger parameter of a one dimensional quantum critical system (massless quench) has so far only been solved in the real-time Heisenberg picture. In order to bridge this theoretical gap and to understand on the same ground massive and massless quenches, we study the problem of a gaussian field characterized by a coupling parameter KK within a strip and a different one K_0K0 in the remaining two semi-infinite planes. We give a fully analytical solution using the electrostatic analogy with the problem of a dielectric material within a strip surrounded by an infinite medium of different dielectric constant, and exploiting the method of charge images. After analytic continuation, this solution allows us to obtain all the correlation functions after the quench within a path integral approach in imaginary time, thus recovering and generalizing the results in real time. Furthermore, this imaginary-time approach establishes a remarkable connection between the quench and the famous problem of the conductivity of a Tomonaga-Luttinger liquid coupled to two semi-infinite leads: the two are in fact related by a rotation of the spacetime coordinates.

Funder

Agence Nationale de la Recherche

European Research Council

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

Publisher

Stichting SciPost

Subject

General Physics and Astronomy

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2. Lokal'nyy kvench v tekhnike Keldysha;Письма в Журнал экспериментальной и теоретической физики;2023-12-15

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4. Exact Dirac–Bogoliubov–de Gennes Dynamics for Inhomogeneous Quantum Liquids;Physical Review Letters;2023-09-06

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