On the status of the geodesic law in general relativity.

The geodesic law for test particles is one of the fundamental principles of general relativity and is extensively used. It is thought to be a consequence of the field laws but no rigorous proof exists. This thesis is concerned with a precise formulation of the geodesic law for test particles and wit...

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Main Author: Nevin, Jennifer Margaret.
Other Authors: Maharaj, Sunil D.
Language:en
Published: 2011
Subjects:
Online Access:http://hdl.handle.net/10413/4014
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spelling ndltd-netd.ac.za-oai-union.ndltd.org-ukzn-oai-http---researchspace.ukzn.ac.za-10413-40142014-02-08T03:48:50ZOn the status of the geodesic law in general relativity.Nevin, Jennifer Margaret.General relativity (Physics)Geodesy--Mathematics.Gravitation.Theses--Mathematics.The geodesic law for test particles is one of the fundamental principles of general relativity and is extensively used. It is thought to be a consequence of the field laws but no rigorous proof exists. This thesis is concerned with a precise formulation of the geodesic law for test particles and with the extent of its validity. It will be shown to be true in certain cases but not in others. A rigorous version of the Infeld/Schild theorem is presented. Several explicit examples of both geodesic and non-geodesic motion of singularities are given. In the case of a test particle derived from a test body with a regular internal stress-energy tensor, a proof of the geodesic law for an ideal fluid test particle under plausible, explicitly stated conditions is given. It is also shown that the geodesic law is not generally true, even for weak fields and slow motion, unless the stress-energy tensor satisfies certain conditions. An explicit example using post-Newtonian theory is given showing how the geodesic law can be violated if these conditions are not satisfied.Thesis (Ph.D.)-University of Natal, Durban, 1998.Maharaj, Sunil D.2011-11-01T09:43:52Z2011-11-01T09:43:52Z19981998Thesishttp://hdl.handle.net/10413/4014en
collection NDLTD
language en
sources NDLTD
topic General relativity (Physics)
Geodesy--Mathematics.
Gravitation.
Theses--Mathematics.
spellingShingle General relativity (Physics)
Geodesy--Mathematics.
Gravitation.
Theses--Mathematics.
Nevin, Jennifer Margaret.
On the status of the geodesic law in general relativity.
description The geodesic law for test particles is one of the fundamental principles of general relativity and is extensively used. It is thought to be a consequence of the field laws but no rigorous proof exists. This thesis is concerned with a precise formulation of the geodesic law for test particles and with the extent of its validity. It will be shown to be true in certain cases but not in others. A rigorous version of the Infeld/Schild theorem is presented. Several explicit examples of both geodesic and non-geodesic motion of singularities are given. In the case of a test particle derived from a test body with a regular internal stress-energy tensor, a proof of the geodesic law for an ideal fluid test particle under plausible, explicitly stated conditions is given. It is also shown that the geodesic law is not generally true, even for weak fields and slow motion, unless the stress-energy tensor satisfies certain conditions. An explicit example using post-Newtonian theory is given showing how the geodesic law can be violated if these conditions are not satisfied. === Thesis (Ph.D.)-University of Natal, Durban, 1998.
author2 Maharaj, Sunil D.
author_facet Maharaj, Sunil D.
Nevin, Jennifer Margaret.
author Nevin, Jennifer Margaret.
author_sort Nevin, Jennifer Margaret.
title On the status of the geodesic law in general relativity.
title_short On the status of the geodesic law in general relativity.
title_full On the status of the geodesic law in general relativity.
title_fullStr On the status of the geodesic law in general relativity.
title_full_unstemmed On the status of the geodesic law in general relativity.
title_sort on the status of the geodesic law in general relativity.
publishDate 2011
url http://hdl.handle.net/10413/4014
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