ANALYSIS OF PLEBANSKI-DEMIANSKI METRIC AND ITS COMPARISON WITH AXISYMMETRIC STATIONARY METRIC
The solution of Einstein's Field Equation in axissymmetric-stationary spacetime is generally represented by Kerr-Newman metric in Minkowski background and by Kerr-Newman-de Sitter in de Sitter background. More general representation of axisymmetric-stationary spacetime is represented by Plebans...
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id-itb.:306932018-10-31T15:38:51ZANALYSIS OF PLEBANSKI-DEMIANSKI METRIC AND ITS COMPARISON WITH AXISYMMETRIC STATIONARY METRIC FIKRI ASSAFARI (NIM : 20216004), ROSIKHUNA Fisika Indonesia Theses Stationary geometry, cosmological constant, Einstein field equation, Ricci scalar, Plebanski-Demianski metric. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/30693 The solution of Einstein's Field Equation in axissymmetric-stationary spacetime is generally represented by Kerr-Newman metric in Minkowski background and by Kerr-Newman-de Sitter in de Sitter background. More general representation of axisymmetric-stationary spacetime is represented by Plebanski-Demianski metric and constant Ricci scalar metric. These two metrics are obtained with different procedure. Kerr-Newman-de Sitter and constant Ricci scalar metric can be derived from Plebanski-Demianski metric with transformation and limiting procedure. From this procedure it can also be seen that the Plebanski-Demianski metric is more general than constant Ricci scalar metric. Further analysis of Plebanski-Demianski metric includes examining its Ricci scalar and its physical and coordinate singularity. text |
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Fisika FIKRI ASSAFARI (NIM : 20216004), ROSIKHUNA ANALYSIS OF PLEBANSKI-DEMIANSKI METRIC AND ITS COMPARISON WITH AXISYMMETRIC STATIONARY METRIC |
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The solution of Einstein's Field Equation in axissymmetric-stationary spacetime is generally represented by Kerr-Newman metric in Minkowski background and by Kerr-Newman-de Sitter in de Sitter background. More general representation of axisymmetric-stationary spacetime is represented by Plebanski-Demianski metric and constant Ricci scalar metric. These two metrics are obtained with different procedure. Kerr-Newman-de Sitter and constant Ricci scalar metric can be derived from Plebanski-Demianski metric with transformation and limiting procedure. From this procedure it can also be seen that the Plebanski-Demianski metric is more general than constant Ricci scalar metric. Further analysis of Plebanski-Demianski metric includes examining its Ricci scalar and its physical and coordinate singularity. |
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Theses |
author |
FIKRI ASSAFARI (NIM : 20216004), ROSIKHUNA |
author_facet |
FIKRI ASSAFARI (NIM : 20216004), ROSIKHUNA |
author_sort |
FIKRI ASSAFARI (NIM : 20216004), ROSIKHUNA |
title |
ANALYSIS OF PLEBANSKI-DEMIANSKI METRIC AND ITS COMPARISON WITH AXISYMMETRIC STATIONARY METRIC |
title_short |
ANALYSIS OF PLEBANSKI-DEMIANSKI METRIC AND ITS COMPARISON WITH AXISYMMETRIC STATIONARY METRIC |
title_full |
ANALYSIS OF PLEBANSKI-DEMIANSKI METRIC AND ITS COMPARISON WITH AXISYMMETRIC STATIONARY METRIC |
title_fullStr |
ANALYSIS OF PLEBANSKI-DEMIANSKI METRIC AND ITS COMPARISON WITH AXISYMMETRIC STATIONARY METRIC |
title_full_unstemmed |
ANALYSIS OF PLEBANSKI-DEMIANSKI METRIC AND ITS COMPARISON WITH AXISYMMETRIC STATIONARY METRIC |
title_sort |
analysis of plebanski-demianski metric and its comparison with axisymmetric stationary metric |
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