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Deformations of spacetime symmetries...
~
Arzano, Michele.
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Deformations of spacetime symmetries = gravity, group-valued momenta and non-commutative fields /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Deformations of spacetime symmetries/ by Michele Arzano, Jerzy Kowalski-Glikman.
Reminder of title:
gravity, group-valued momenta and non-commutative fields /
Author:
Arzano, Michele.
other author:
Kowalski-Glikman, Jerzy.
Published:
Berlin, Heidelberg :Springer Berlin Heidelberg : : 2021.,
Description:
xiii, 192 p. :ill., digital ;24 cm.
[NT 15003449]:
Invitation: gravity, point particles, and group-valued momenta -- Gravity in 2+1 dimensions as a Chern-Simons theory -- Gravity in 3+1 dimensions, particles and topological limit -- Deformed classical particles: phase space and kinematics -- Hopf algebra relativistic symmetries: the k-Poincare algebra -- Classical fields, symmetries and conserved charges -- Free quantum fields and discrete symmetries.
Contained By:
Springer Nature eBook
Subject:
Mathematical physics. -
Online resource:
https://doi.org/10.1007/978-3-662-63097-6
ISBN:
9783662630976
Deformations of spacetime symmetries = gravity, group-valued momenta and non-commutative fields /
Arzano, Michele.
Deformations of spacetime symmetries
gravity, group-valued momenta and non-commutative fields /[electronic resource] :by Michele Arzano, Jerzy Kowalski-Glikman. - Berlin, Heidelberg :Springer Berlin Heidelberg :2021. - xiii, 192 p. :ill., digital ;24 cm. - Lecture notes in physics,v.9860075-8450 ;. - Lecture notes in physics ;v.986..
Invitation: gravity, point particles, and group-valued momenta -- Gravity in 2+1 dimensions as a Chern-Simons theory -- Gravity in 3+1 dimensions, particles and topological limit -- Deformed classical particles: phase space and kinematics -- Hopf algebra relativistic symmetries: the k-Poincare algebra -- Classical fields, symmetries and conserved charges -- Free quantum fields and discrete symmetries.
This monograph provides an introduction to deformations of Poincare symmetries focusing on models with a Lie group momentum space and associated non-commutative space-times. The emphasis is put on the emergence of such structures from quantum gravity, their mathematical features described in terms of Hopf algebras and applications to particle kinematics and field theory. Part I of this work focuses on the link between gravity and deformed symmetries in the case of 2+1 and 3+1 space-time dimensions. Part II is devoted to the description of classical particles with group valued momenta, their phase spaces and kinematics. The last part of these notes provides an introduction to the basic features of classical and quantum field theory on k-Minkowski space-time, the prototypical example of non-commutative space-time exhibiting deformed Poincare symmetry. The text, being the first providing a detailed overview of these topics, is primarily intended for researchers and graduate students interested in non-commutative field theories and quantum gravity phenomenology.
ISBN: 9783662630976
Standard No.: 10.1007/978-3-662-63097-6doiSubjects--Topical Terms:
516853
Mathematical physics.
LC Class. No.: QC20 / .A793 2021
Dewey Class. No.: 530.15
Deformations of spacetime symmetries = gravity, group-valued momenta and non-commutative fields /
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Invitation: gravity, point particles, and group-valued momenta -- Gravity in 2+1 dimensions as a Chern-Simons theory -- Gravity in 3+1 dimensions, particles and topological limit -- Deformed classical particles: phase space and kinematics -- Hopf algebra relativistic symmetries: the k-Poincare algebra -- Classical fields, symmetries and conserved charges -- Free quantum fields and discrete symmetries.
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