Non-equilibrium Dynamics of One-Dimensional Bose Gases Non-equilibrium Dynamics of One-Dimensional Bose Gases

Non-equilibrium Dynamics of One-Dimensional Bose Gases

    • €87.99
    • €87.99

Publisher Description

This work presents a series of experiments with ultracold one-dimensional Bose gases, which establish said gases as an ideal model system for exploring a wide range of non-equilibrium phenomena. With the help of newly developed tools, like full distributions functions and phase correlation functions, the book reveals the emergence of thermal-like transient states, the light-cone-like emergence of thermal correlations and the observation of generalized thermodynamic ensembles. This points to a natural emergence of classical statistical properties from the microscopic unitary quantum evolution, and lays the groundwork for a universal framework of non-equilibrium physics. The thesis investigates a central question that is highly contested in quantum physics: how and to which extent does an isolated quantum many-body system relax? This question arises in many diverse areas of physics, and many of the open problems appear at vastly different energy, time and length scales, ranging from high-energy physics and cosmology to condensed matter and quantum information. A key challenge in attempting to answer this question is the scarcity of quantum many-body systems that are both well isolated from the environment and accessible for experimental study.

GENRE
Science & Nature
RELEASED
2015
22 May
LANGUAGE
EN
English
LENGTH
161
Pages
PUBLISHER
Springer International Publishing
PROVIDER INFO
Springer Science & Business Media LLC
SIZE
4.7
MB
Proceedings of the 240 Conference Proceedings of the 240 Conference
2014
Physics on Ultracold Quantum Gases Physics on Ultracold Quantum Gases
2018
Advances in Chemical Physics, Volume 159 Advances in Chemical Physics, Volume 159
2016
From Classical to Quantum Plasmonics in Three and Two Dimensions From Classical to Quantum Plasmonics in Three and Two Dimensions
2017
Relativistic Dissipative Hydrodynamic Description of the Quark-Gluon Plasma Relativistic Dissipative Hydrodynamic Description of the Quark-Gluon Plasma
2014
Synthetic Spin-Orbit Coupling in Cold Atoms Synthetic Spin-Orbit Coupling in Cold Atoms
2018