Distribution of Energy Momentum Tensor around Static Charges in Lattice Simulations and an Effective Model
Distribution of Energy Momentum Tensor around Static Charges in Lattice Simulations and an Effective Model
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The energy momentum tensor (EMT) is a fundamental observable in physics, and a novel method to define it on the basis of the gradient-flow formalism has been proposed. This approach has been successfully applied to the analyses on thermodynamic quantities, and this book presents the study on spatial EMT distributions around static charges via the gradient flow in lattice simulations based on SU(3) Yang-Mills theory. These achievements open up various future studies for revealing non-trivial aspects of the strong interaction.
Format: Paperback / softback
Length: 158 pages
Publication date: 24 October 2022
Publisher: Springer Verlag, Singapore
The energy momentum tensor (EMT) holds a paramount position among the fundamental observables in the realm of physics. In recent times, a novel approach has emerged to define the EMT based on the gradient-flow formalism. Remarkably, this method allows for the construction of the EMT operator even on the lattice, enabling non-perturbative computations. This breakthrough has proven invaluable in analyzing thermodynamic quantities.
This book delves into the exploration of spatial EMT distributions around static charges through lattice simulations employing the SU(3) Yang-Mills theory. Static charges serve as probes to investigate intricate quantum systems, and the EMT subsequently captures the response of both vacuum and hot medium in the presence of these charges. This research offers profound and innovative insights into non-perturbative phenomena, such as quark confinement, providing a deeper understanding of the underlying physics. Furthermore, the book examines the distribution of the EMT around a magnetic vortex in the Abelian-Higgs model, comparing its findings with lattice results. These accomplishments lay the foundation for future studies aimed at unraveling the enigmatic aspects of the strong interaction.
In addition to its core content, the book includes comprehensive reviews on various aspects of the EMT, lattice gauge theory, and the gradient-flow formalism, with their applications in defining the EMT. These reviews serve as valuable resources for students and young researchers seeking an introduction to this field.
Weight: 279g
Dimension: 235 x 155 (mm)
ISBN-13: 9789811662362
Edition number: 1st ed. 2021
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