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Non-Equilibrium Dynamics of One-Dimensional Bose Gases (Softcover Reprint of the Original 1st 2015)

Non-equilibrium Dynamics of One-Dimensional Bose Gases

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"Non-equilibrium Dynamics of One-Dimensional Bose Gases" by Tim Langen is a mathematics book and learning resource focused on Thermal Effects. Best for teachers, students, and readers looking for stronger mathematical understanding.

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.

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Best For: Researchers and students interested in quantum theory and thermal effects in low-dimensional systems.
Focus: Experimental investigation of non-equilibrium phenomena in ultracold one-dimensional Bose gases.
Covers: Use of full distribution functions and phase correlation functions to study thermal-like transient states and thermal correlations.
Why It Matters: Provides insights into the dynamics of quantum gases out of equilibrium, contributing to understanding thermalization processes in quantum systems.

"Non-equilibrium Dynamics of One-Dimensional Bose Gases" by Tim Langen is a mathematics book and learning resource focused on Thermal Effects. Best for teachers, students, and readers looking for stronger mathematical understanding.

Topic: Thermal Effects

Author: Tim Langen

Who this is for:

  • Teachers and classroom instructors
  • Students building subject mastery
  • Readers looking for practical learning support

Why this book matters: It stands out as a practical math resource that helps explain concepts, strengthen problem-solving, and support classroom or independent learning.

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.

AuthorTim Langen
PublisherSpringer
Published2016-10-17
ISBN-139783319387000
BindingPaperback
LanguageEnglish
SubjectsScience
TopicThermal Effects
SeriesSpringer Theses

Format: Paperback

Language: English

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