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Einstein equations = local energy, self-force, and fields in general relativity ; Domoschool 2019 /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Einstein equations/ edited by Sergio Luigi Cacciatori, Alexander Kamenshchik.
Reminder of title:
local energy, self-force, and fields in general relativity ; Domoschool 2019 /
remainder title:
Domoschool 2019
other author:
Cacciatori, Sergio Luigi.
corporate name:
Workshop on the Preservation of Stability under Discretization
Published:
Cham :Springer International Publishing : : 2022.,
Description:
x, 258 p. :ill., digital ; : 24 cm.;
Contained By:
Springer Nature eBook
Subject:
Einstein field equations - Congresses. -
Online resource:
https://doi.org/10.1007/978-3-031-21845-3
ISBN:
9783031218453
Einstein equations = local energy, self-force, and fields in general relativity ; Domoschool 2019 /
Einstein equations
local energy, self-force, and fields in general relativity ; Domoschool 2019 /[electronic resource] :Domoschool 2019edited by Sergio Luigi Cacciatori, Alexander Kamenshchik. - Cham :Springer International Publishing :2022. - x, 258 p. :ill., digital ;24 cm. - Tutorials, schools, and workshops in the mathematical sciences,2522-0977. - Tutorials, schools, and workshops in the mathematical sciences..
Part I. Main Lectures -- Introduction to the Wang-Yau quasi-local energy -- Gravitational self-force in the Schwarzschild spacetime -- Geometry and analysis in black hole spacetimes -- Study of fundamental laws with Antimatter -- Part II. Proceedings -- Quantum Ergosphere and Brick Wall -- Geodesic structure and linear instability of some wormholes -- New trends in the general relativistic Poynting-Robertson effect modeling -- Brief Overview of Numerical Relativity -- Length-contraction in curved spacetime -- Exact solutions of Einstein-Maxwell(-dilation) equations with discrete translational symmetry -- Exact solutions of the Einstein equations for an infinite slab with constant energy density -- Emergence of classicality from an inhomogeneous universe.
This volume guides early-career researchers through recent breakthroughs in mathematics and physics as related to general relativity. Chapters are based on courses and lectures given at the July 2019 Domoschool, International Alpine School in Mathematics and Physics, held in Domodossola, Italy, which was titled "Einstein Equations: Physical and Mathematical Aspects of General Relativity". Structured in two parts, the first features four courses from prominent experts on topics such as local energy in general relativity, geometry and analysis in black hole spacetimes, and antimatter gravity. The second part features a variety of papers based on talks given at the summer school, including topics like: Quantum ergosphere General relativistic Poynting-Robertson effect modelling Numerical relativity Length-contraction in curved spacetime Classicality from an inhomogeneous universe Einstein Equations: Local Energy, Self-Force, and Fields in General Relativity will be a valuable resource for students and researchers in mathematics and physicists interested in exploring how their disciplines connect to general relativity.
ISBN: 9783031218453
Standard No.: 10.1007/978-3-031-21845-3doiSubjects--Topical Terms:
1414533
Einstein field equations
--Congresses.
LC Class. No.: QC173.6
Dewey Class. No.: 530.11
Einstein equations = local energy, self-force, and fields in general relativity ; Domoschool 2019 /
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Part I. Main Lectures -- Introduction to the Wang-Yau quasi-local energy -- Gravitational self-force in the Schwarzschild spacetime -- Geometry and analysis in black hole spacetimes -- Study of fundamental laws with Antimatter -- Part II. Proceedings -- Quantum Ergosphere and Brick Wall -- Geodesic structure and linear instability of some wormholes -- New trends in the general relativistic Poynting-Robertson effect modeling -- Brief Overview of Numerical Relativity -- Length-contraction in curved spacetime -- Exact solutions of Einstein-Maxwell(-dilation) equations with discrete translational symmetry -- Exact solutions of the Einstein equations for an infinite slab with constant energy density -- Emergence of classicality from an inhomogeneous universe.
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This volume guides early-career researchers through recent breakthroughs in mathematics and physics as related to general relativity. Chapters are based on courses and lectures given at the July 2019 Domoschool, International Alpine School in Mathematics and Physics, held in Domodossola, Italy, which was titled "Einstein Equations: Physical and Mathematical Aspects of General Relativity". Structured in two parts, the first features four courses from prominent experts on topics such as local energy in general relativity, geometry and analysis in black hole spacetimes, and antimatter gravity. The second part features a variety of papers based on talks given at the summer school, including topics like: Quantum ergosphere General relativistic Poynting-Robertson effect modelling Numerical relativity Length-contraction in curved spacetime Classicality from an inhomogeneous universe Einstein Equations: Local Energy, Self-Force, and Fields in General Relativity will be a valuable resource for students and researchers in mathematics and physicists interested in exploring how their disciplines connect to general relativity.
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