Accreting Scalar-Field Models of Dark Energy Onto Morris-Thorne Wormhole

Author:

Chattopadhyay Surajit1ORCID,Pasqua Antonio2,Radinschi Irina3

Affiliation:

1. Pailan College of Management and Technology (MCA Division), Bengal Pailan Park, Kolkata 700 104, India , E-mail:

2. Department of Physics, University of Trieste, Via Valerio, 2, 34127 Trieste, Italy

3. Department of Physics, “Gh. Asachi” Technical University, Iasi 700050, Romania

Abstract

Abstract The present paper reports a study on accreting tachyon, Dirac-Born-Infeld essence and h-essence scalar field models of dark energy onto Morris-Thorne wormhole. Using three different parameterisation schemes and taking H = H 0 + H 1 t $H\, = \,{H_0}\, + \,{{{H_1}} \over t}$ , we have derived the mass of the wormhole for all of the three parameterisation schemes that are able to get hold of both quintessence and phantom behaviour. With suitable choice of parameters, we observed that accreting scalar field dark energy models are increasing the mass of the wormhole in the phantom phase and the mass is decreasing in the quintessence phase. Finally, we have considered accretion with power law form of scale factor and without any parameterisation scheme for the equation of state parameter and observed the fact that phantom-type dark energy supports the existence of wormholes.

Publisher

Walter de Gruyter GmbH

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy,Mathematical Physics

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