National Science Library of Georgia

Image from Google Jackets

Relativistic fluid dynamics in and out of equilibrium : and applications to relativistic nuclear collisions / Paul Romatschke, Ulrike Romatschke.

By: Contributor(s): Material type: TextTextSeries: Cambridge monographs on mathematical physicsPublisher: Cambridge : Cambridge University Press, 2019Description: 1 online resource (viii, 195 pages) : digital, PDF file(s)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781108651998 (ebook)
Subject(s): Additional physical formats: Print version: : No titleDDC classification:
  • 532.05 23
LOC classification:
  • QA912 .R66 2019
Online resources:
Contents:
Outline, notation, preliminaries -- Modern theory of fluid dynamics -- Microscopic theory background -- Simulating relativistic nuclear collisions -- Comparison to experimental data -- Summary and conclusions.
Summary: The past decade has seen unprecedented developments in the understanding of relativistic fluid dynamics in and out of equilibrium, with connections to astrophysics, cosmology, string theory, quantum information, nuclear physics and condensed matter physics. Romatschke and Romatschke offer a powerful new framework for fluid dynamics, exploring its connections to kinetic theory, gauge/gravity duality and thermal quantum field theory. Numerical algorithms to solve the equations of motion of relativistic dissipative fluid dynamics as well as applications to various systems are discussed. In particular, the book contains a comprehensive review of the theory background necessary to apply fluid dynamics to simulate relativistic nuclear collisions, including comparisons of fluid simulation results to experimental data for relativistic lead-lead, proton-lead and proton-proton collisions at the Large Hadron Collider (LHC). The book is an excellent resource for students and researchers working in nuclear physics, astrophysics, cosmology, quantum many-body systems and string theory.
Tags from this library: No tags from this library for this title. Log in to add tags.
No physical items for this record

Title from publisher's bibliographic system (viewed on 02 May 2019).

Outline, notation, preliminaries -- Modern theory of fluid dynamics -- Microscopic theory background -- Simulating relativistic nuclear collisions -- Comparison to experimental data -- Summary and conclusions.

The past decade has seen unprecedented developments in the understanding of relativistic fluid dynamics in and out of equilibrium, with connections to astrophysics, cosmology, string theory, quantum information, nuclear physics and condensed matter physics. Romatschke and Romatschke offer a powerful new framework for fluid dynamics, exploring its connections to kinetic theory, gauge/gravity duality and thermal quantum field theory. Numerical algorithms to solve the equations of motion of relativistic dissipative fluid dynamics as well as applications to various systems are discussed. In particular, the book contains a comprehensive review of the theory background necessary to apply fluid dynamics to simulate relativistic nuclear collisions, including comparisons of fluid simulation results to experimental data for relativistic lead-lead, proton-lead and proton-proton collisions at the Large Hadron Collider (LHC). The book is an excellent resource for students and researchers working in nuclear physics, astrophysics, cosmology, quantum many-body systems and string theory.

There are no comments on this title.

to post a comment.
Copyright © 2023 Sciencelib.ge All rights reserved.