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...
Saved in:
Main Author: | |
---|---|
Format: | Theses |
Language: | Indonesia |
Online Access: | https://digilib.itb.ac.id/gdl/view/11751 |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
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 |
_version_ |
1820728302327824384 |