Fr. 134.00

Correlations in Low-Dimensional Quantum Gases

English · Hardback

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Description

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The book addresses several aspects of thermodynamics and correlations in the strongly-interacting regime of one-dimensional bosons, a topic at the forefront of current theoretical and experimental studies. Strongly correlated systems of one-dimensional bosons have a long history of theoretical study. Their experimental realisation in ultracold atom experiments is the subject of current research, which took off in the early 2000s. Yet these experiments raise new theoretical questions, just begging to be answered.
Correlation functions are readily available for experimental measurements. In this book, they are tackled by means of sophisticated theoretical methods developed in condensed matter physics and mathematical physics, such as bosonization, the Bethe Ansatz and conformal field theory. Readers are introduced to these techniques, which are subsequently used to investigate many-body static and dynamical correlation functions.

List of contents

Introduction: this thesis.- From 3D to 1D and back to 2D.- Ground-state static correlation functions of the Lieb-Liniger model.- Dynamical structure factor of the Lieb-Liniger model and drag force due to a potential barrier.- Dimensional crossovers in a gas of noninteracting spinless fermions.- General conclusion.- Appendix.

Summary

The book addresses several aspects of thermodynamics and correlations in the strongly-interacting regime of one-dimensional bosons, a topic at the forefront of current theoretical and experimental studies. Strongly correlated systems of one-dimensional bosons have a long history of theoretical study. Their experimental realisation in ultracold atom experiments is the subject of current research, which took off in the early 2000s. Yet these experiments raise new theoretical questions, just begging to be answered.
Correlation functions are readily available for experimental measurements. In this book, they are tackled by means of sophisticated theoretical methods developed in condensed matter physics and mathematical physics, such as bosonization, the Bethe Ansatz and conformal field theory. Readers are introduced to these techniques, which are subsequently used to investigate many-body static and dynamical correlation functions.

Product details

Authors Lang Guillaume, Guillaume Lang
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 01.01.2019
 
EAN 9783030052843
ISBN 978-3-0-3005284-3
No. of pages 193
Dimensions 156 mm x 243 mm x 17 mm
Weight 454 g
Illustrations XVII, 193 p. 46 illus., 44 illus. in color.
Series Springer Theses
Springer Theses
Subject Natural sciences, medicine, IT, technology > Physics, astronomy > Theoretical physics

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