PHYSICAL APPLICATION OF THE SPHERICAL SOLUTION OF THE RICCI FLOW EQUATION IN FOUR DIMENSIONAL SPACETIME

The Ricci flow (RF) is a flow equation which describe a diffusive process acting on the Riemannian metric driven by its Ricci curvature. This equation was introduced by Richard Hamilton in 1982 as a tool for proving the Thurston's geometrization conjecture for closed 3-manifolds. The equation c...

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Main Author: SUROSO (NIM. 20208007), AGUS
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/11751
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:11751
spelling id-itb.:117512017-09-27T14:40:57ZPHYSICAL APPLICATION OF THE SPHERICAL SOLUTION OF THE RICCI FLOW EQUATION IN FOUR DIMENSIONAL SPACETIME SUROSO (NIM. 20208007), AGUS Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/11751 The Ricci flow (RF) is a flow equation which describe a diffusive process acting on the Riemannian metric driven by its Ricci curvature. This equation was introduced by Richard Hamilton in 1982 as a tool for proving the Thurston's geometrization conjecture for closed 3-manifolds. The equation can be applied in general relativity. Solution of the RF equation is a Schwarzschild-de Sitter which evolves linearly in non-coordinate parameter T (tau). We study some physical application of the solution concerning light bending, perihelion precession, and surface gravity of black hole. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description The Ricci flow (RF) is a flow equation which describe a diffusive process acting on the Riemannian metric driven by its Ricci curvature. This equation was introduced by Richard Hamilton in 1982 as a tool for proving the Thurston's geometrization conjecture for closed 3-manifolds. The equation can be applied in general relativity. Solution of the RF equation is a Schwarzschild-de Sitter which evolves linearly in non-coordinate parameter T (tau). We study some physical application of the solution concerning light bending, perihelion precession, and surface gravity of black hole.
format Theses
author SUROSO (NIM. 20208007), AGUS
spellingShingle SUROSO (NIM. 20208007), AGUS
PHYSICAL APPLICATION OF THE SPHERICAL SOLUTION OF THE RICCI FLOW EQUATION IN FOUR DIMENSIONAL SPACETIME
author_facet SUROSO (NIM. 20208007), AGUS
author_sort SUROSO (NIM. 20208007), AGUS
title PHYSICAL APPLICATION OF THE SPHERICAL SOLUTION OF THE RICCI FLOW EQUATION IN FOUR DIMENSIONAL SPACETIME
title_short PHYSICAL APPLICATION OF THE SPHERICAL SOLUTION OF THE RICCI FLOW EQUATION IN FOUR DIMENSIONAL SPACETIME
title_full PHYSICAL APPLICATION OF THE SPHERICAL SOLUTION OF THE RICCI FLOW EQUATION IN FOUR DIMENSIONAL SPACETIME
title_fullStr PHYSICAL APPLICATION OF THE SPHERICAL SOLUTION OF THE RICCI FLOW EQUATION IN FOUR DIMENSIONAL SPACETIME
title_full_unstemmed PHYSICAL APPLICATION OF THE SPHERICAL SOLUTION OF THE RICCI FLOW EQUATION IN FOUR DIMENSIONAL SPACETIME
title_sort physical application of the spherical solution of the ricci flow equation in four dimensional spacetime
url https://digilib.itb.ac.id/gdl/view/11751
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