Bounce Behaviour of Kantowski-Sach Cosmological Model in General Relativity

Authors

  • Himchandra Ram Ghate

  • Yogendra D. Patil

kantowski-sach space-time, bouncing universe

Abstract

Kantowski-Sach cosmological model has obtained in the general theory of relativity. The source for energy-momentum tensor is assumed a perfect fluid. The field equations have solved by using special form of the average scale factor

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How to Cite

Bounce Behaviour of Kantowski-Sach Cosmological Model in General Relativity. (2017). Global Journal of Science Frontier Research, 17(A4), 37-42. https://www.journalofscience.org/index.php/GJSFR/article/view/2058

References

Adam Riess, Alexei Filippenko, Peter Challis, Alejandro Clocchiatti, Alan Diercks, Peter Garnavich, Ron Gilliland, Craig Hogan, Saurabh Jha, Robert Kirshner, B Leibundgut, M Phillips, David Reiss, Brian Schmidt, Robert Schommer, R Smith, J Spyromilio, Christopher Stubbs, Nicholas Suntzeff, John Tonry (1998) Observational Evidence from Supernovae for an Accelerating Universe and a Cosmological Constant. 116(3), 1009-1038.

S Perlmutter, G Aldering, G Goldhaber, R Knop, P Nugent, P Castro, S Deustua, S Fabbro, A Goobar, D Groom, I Hook, A Kim, M Kim, J Lee, N Nunes, R Pain, C Pennypacker, R Quimby, C Lidman, R Ellis, M Irwin, R Mcmahon, P Ruiz‐lapuente, N Walton, B Schaefer, B Boyle, A Filippenko, T Matheson, A Fruchter, N Panagia, H Newberg, W Couch, The Project (1999) Measurements of Ω and Λ from 42 High‐Redshift Supernovae. 517(2), 565-586.

C Bennett, M Halpern, G Hinshaw (2003) First year Wilkinson microwave anisotropy probe (WMAP) Observations: Preliminary maps and basic results. 148, 1.

D Spergel, R Bean, O Dore, M Nolta, C Bennett, J Dunkley, G Hinshaw, N Jarosik, E Komatsu, L Page, H Peiris, L Verde, M Halpern, R Hill, A Kogut, M Limon, S Meyer, N Odegard, G Tucker, J Weiland, E Wollack, E Wright (2007) Three‐YearWilkinson Microwave Anisotropy Probe(WMAP) Observations: Implications for Cosmology. 170(2), 377-408.

M Tegmark (2004) Cosmological Parameters from SDSS and NMAP. 69, 103501.

M Kowalski, D Rubin, G Aldering, R Agostinho, A Amadon, R Amanullah, C Balland, K Barbary, G Blanc, P Challis (2008) Improved cosmological constants from new, old, and combined supernova data sets. 686, 749-778.

Shin'ichi Nojiri, Sergei Odintsov, Shinji Tsujikawa (2005) Properties of singularities in the (phantom) dark energy universe. 71(6), 63004.

K Bamba, S Capozziello, S Nojiri, S Odintsov (2012) Dark energy cosmology: The equivalent description via different theoretical models and cosmography tests. 342, 155-228.

Shin'ichi Nojiri, Sergei Odintsov (2011) Unified cosmic history in modified gravity: From http://www.w3.org/1998/Math/MathML" altimg="si10.gif" display="inline" overflow="scroll">F(R) theory to Lorentz non-invariant models. 505(2-4), 59-144.

Yi-Fu Cai, Taotao Qiu, Xinmin Zhang, Yun-Song Piao, Mingzhe Li (2007) Bouncing universe with Quintom matter. 2007(10), 071-071.

M Novello, S Bergliaffa (2008) Bouncing cosmologies. 463(4), 127-213.

David Wands (1999) Duality invariance of cosmological perturbation spectra. 60(2), 23507.

Fabio Finelli, Robert Brandenberger (2002) Generation of a scale-invariant spectrum of adiabatic fluctuations in cosmological models with a contracting phase. 65(10), 103522.

S Sadatian (2014) Rip Singularity Scenario and Bouncing Universe in a Chaplygin Gas Dark Energy Model. 53(2), 675-684.

Kazuharu Bamba, Andrey Makarenko, Alexandr Myagky, Sergei Odintsov (2015) Bounce universe from string-inspired Gauss-Bonnet gravity. 2015(04), 001-001.

Artyom Astashenok (2014) Effective dark energy models and dark energy models with bounce in frames of F(T) gravity. 351(1), 377-383.

Deon Solomons, Peter Dunsby, George Ellis (2006) Bounce behaviour in Kantowski-Sachs and Bianchi cosmologies. 23(23), 6585-6597.

G Silva, O Piattella, J Fabris, L Casarini, T Barbosa (2013) Bouncing solutions in Rastall's theory with a barotropic fluid. 19, 156-162.

I Brevik, V Obukhov, A Timoshkin (2014) Bounce universe induced by an inhomogeneous dark fluid coupled with dark matter. 29(15), 1450078.

T Singh, R Chaubey, Ashutosh Singh (2015) k-essence cosmologies in Kantowski-Sachs and Bianchi space-times. 93(11), 1319-1323.

C Collins, E Glass, D Wilkinson (1980) Exact spatially homogeneous cosmologies. 12(10), 805-823.

Özgür Akarsu, Can Kılınç (2010) LRS Bianchi type I models with anisotropic dark energy and constant deceleration parameter. 42(1), 119-140.

O Akarsu, C Kilinc (2010) Bianchi type-III models with anisotropic dark energy. 42(4), 763-775.

Hassan Amirhashchi, Anirudh Pradhan, Bijan Saha (2011) Variable equation of state for Bianchi type-VI0 dark energy models. 333(1), 295-303.

Bijan Saha, Hassan Amirhashchi, Anirudh Pradhan (2012) Two-fluid scenario for dark energy models in an FRW universe-revisited. 342(1), 257-267.

Suresh Kumar, C Singh (2011) Anisotropic dark energy models with constant deceleration parameter. 43(5), 1427-1442.

Adam Riess, Louis‐gregory Strolger, John Tonry, Stefano Casertano, Henry Ferguson, Bahram Mobasher, Peter Challis, Alexei Filippenko, Saurabh Jha, Weidong Li, Ryan Chornock, Robert Kirshner, Bruno Leibundgut, Mark Dickinson, Mario Livio, Mauro Giavalisco, Charles Steidel, Txitxo Benitez, Zlatan Tsvetanov (2004) Type Ia Supernova Discoveries atz> 1 from theHubble Space Telescope: Evidence for Past Deceleration and Constraints on Dark Energy Evolution. 607(2), 665-687.

John Tonry, Brian Schmidt, Brian Barris, Pablo Candia, Peter Challis, Alejandro Clocchiatti, Alison Coil, Alexei Filippenko, Peter Garnavich, Craig Hogan, Stephen Holland, Saurabh Jha, Robert Kirshner, Kevin Krisciunas, Bruno Leibundgut, Weidong Li, Thomas Matheson, Mark Phillips, Adam Riess, Robert Schommer, R Smith, Jesper Sollerman, Jason Spyromilio, Christopher Stubbs, Nicholas Suntzeff (2003) Cosmological Results from High‐zSupernovae. 594(1), 1-24.

Alejandro Clocchiatti, Brian Schmidt, Alexei Filippenko, Peter Challis, Alison Coil, R Covarrubias, Alan Diercks, Peter Garnavich, Lisa Germany, Ron Gilliland, Craig Hogan, Saurabh Jha, Robert Kirshner, Bruno Leibundgut, Doug Leonard, Weidong Li, Thomas Matheson, Mark Phillips, Jose Prieto, David Reiss, Adam Riess, Robert Schommer, R Smith, Alicia Soderberg, Jason Spyromilio, Christopher Stubbs, Nicholas Suntzeff, John Tonry, Patrick Woudt (2006) Hubble Space Telescopeand Ground‐based Observations of Type Ia Supernovae at Redshift 0.5: Cosmological Implications. 642(1), 1-21.

S Hanany, P Ade, A Balbi, J Bock, J Borrill, A Boscaleri, P De Bernardis, P Ferreira, V Hristov, A Jaffe, A Lange, A Lee, P Mauskopf, C Netterfield, S Oh, E Pascale, B Rabii, P Richards, G Smoot, R Stompor, C Winant, J Wu (2000) MAXIMA-1: A Measurement of the Cosmic Microwave Background Anisotropy on Angular Scales of 10[arcmin]-5°. 545(1), L5-L9.

L Amendola (2003) Acceleration at z > 1?. 342(1), 221-226.

T Padmanabhan, T Choudhury (2003) A theoretician's analysis of the supernova data and the limitations in determining the nature of dark energy. 344(3), 823-834.

Adam Riess, Peter Nugent, Ronald Gilliland, Brian Schmidt, John Tonry, Mark Dickinson, Rodger Thompson, Tamas Budavari, Stefano Casertano, Aaron Evans, Alexei Filippenko, Mario Livio, David Sanders, Alice Shapley, Hyron Spinrad, Charles Steidel, Daniel Stern, Jason Surace, Sylvain Veilleux (2001) The Farthest Known Supernova: Support for an Accelerating Universe and a Glimpse of the Epoch of Deceleration. 560(1), 49-71.

Bounce Behaviour of Kantowski-Sach Cosmological Model in General Relativity

Published

2017-11-22

How to Cite

Bounce Behaviour of Kantowski-Sach Cosmological Model in General Relativity. (2017). Global Journal of Science Frontier Research, 17(A4), 37-42. https://www.journalofscience.org/index.php/GJSFR/article/view/2058