Size of shell universe in light of Fermi GBM transient associated with GW150914

The possible burst occurred in location and temporal consistence with gravitational wave event GW150914, as reported by Fermi GBM, offers a new way of constraining models with extra dimensions. Using the time delay in arrival of the gamma ray transient observed by Fermi Gamma-ray Burst Monitor (GMB)...

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Main Authors: Merab Gogberashvili, Alexander S. Sakharov, Edward K. Sarkisyan-Grinbaum
Format: Article
Language:English
Published: Elsevier 2016-12-01
Series:Physics Letters B
Online Access:http://www.sciencedirect.com/science/article/pii/S0370269316306207
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author Merab Gogberashvili
Alexander S. Sakharov
Edward K. Sarkisyan-Grinbaum
author_facet Merab Gogberashvili
Alexander S. Sakharov
Edward K. Sarkisyan-Grinbaum
author_sort Merab Gogberashvili
collection DOAJ
description The possible burst occurred in location and temporal consistence with gravitational wave event GW150914, as reported by Fermi GBM, offers a new way of constraining models with extra dimensions. Using the time delay in arrival of the gamma ray transient observed by Fermi Gamma-ray Burst Monitor (GMB) relative to the gravitational waves event triggered by the LIGO detectors we investigate the size of the spherical brane-universe expanding in multi-dimensional space–time. It is shown that a joint observation of gravitational waves in association with gamma ray burst can provide a very stringent bound on the spatial curvature of the brain. Keywords: Gravitational waves, Gamma ray burst, Extra dimensions
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spelling doaj.art-e9c8fccfc7914476b83793377726597e2022-12-22T02:01:00ZengElsevierPhysics Letters B0370-26932016-12-01763397400Size of shell universe in light of Fermi GBM transient associated with GW150914Merab Gogberashvili0Alexander S. Sakharov1Edward K. Sarkisyan-Grinbaum2Department of Exact and Natural Sciences, Javakhishvili Tbilisi State University, Tbilisi 0179, Georgia; Department of High Energy Physics, Andronikashvili Institute of Physics, Tbilisi 0177, Georgia; Corresponding author.Department of Physics, New York University, 4 Washington Place, New York, NY 10003, United States; Physics Department, Manhattan College, 4513 Manhattan College Parkway, Riverdale, NY 10471, United States; Experimental Physics Department, CERN, CH-1211 Genève 23, SwitzerlandExperimental Physics Department, CERN, CH-1211 Genève 23, Switzerland; Department of Physics, The University of Texas at Arlington, 502 Yates Street, Box 19059, Arlington, TX 76019, United StatesThe possible burst occurred in location and temporal consistence with gravitational wave event GW150914, as reported by Fermi GBM, offers a new way of constraining models with extra dimensions. Using the time delay in arrival of the gamma ray transient observed by Fermi Gamma-ray Burst Monitor (GMB) relative to the gravitational waves event triggered by the LIGO detectors we investigate the size of the spherical brane-universe expanding in multi-dimensional space–time. It is shown that a joint observation of gravitational waves in association with gamma ray burst can provide a very stringent bound on the spatial curvature of the brain. Keywords: Gravitational waves, Gamma ray burst, Extra dimensionshttp://www.sciencedirect.com/science/article/pii/S0370269316306207
spellingShingle Merab Gogberashvili
Alexander S. Sakharov
Edward K. Sarkisyan-Grinbaum
Size of shell universe in light of Fermi GBM transient associated with GW150914
Physics Letters B
title Size of shell universe in light of Fermi GBM transient associated with GW150914
title_full Size of shell universe in light of Fermi GBM transient associated with GW150914
title_fullStr Size of shell universe in light of Fermi GBM transient associated with GW150914
title_full_unstemmed Size of shell universe in light of Fermi GBM transient associated with GW150914
title_short Size of shell universe in light of Fermi GBM transient associated with GW150914
title_sort size of shell universe in light of fermi gbm transient associated with gw150914
url http://www.sciencedirect.com/science/article/pii/S0370269316306207
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