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Anisotropic f(Q) gravity model with bulk viscosity
被引:5
作者:
Koussour, M.
[1
]
Shekh, S. H.
[2
]
Bennai, M.
[1
,3
]
Myrzakulov, N.
[4
]
机构:
[1] Casablanca Hassan II Univ, Fac Sci Ben Msik, LPMC, Quantum Phys & Magnetism Team, Casablanca, Morocco
[2] SPM Sci & Gilani Arts Commerce Coll, Dept Math, Ghatanji 445301, Maharashtra, India
[3] Univ Mohammed V Agdal, Fac Sci, Lab High Energy Phys Modeling & Simulat, Rabat, Morocco
[4] LN Gumilyov Eurasian Natl Univ, Astana 010008, Kazakhstan
关键词:
f(Q) gravity;
bulk viscosity;
Bianchi type-I Universe;
deceleration parameter;
BARYON ACOUSTIC-OSCILLATIONS;
HOLOGRAPHIC DARK ENERGY;
PROBE WMAP OBSERVATIONS;
EQUATION-OF-STATE;
COSMOLOGICAL MODEL;
RUNNING VACUUM;
UNIVERSE;
CONSTRAINTS;
PARAMETERS;
STABILITY;
D O I:
10.1142/S0217732324500238
中图分类号:
P1 [天文学];
学科分类号:
0704 ;
摘要:
This study investigates the dynamics of a spatially homogeneous and anisotropic LRS Bianchi type-I Universe with viscous fluid in the framework of f(Q) symmetric teleparallel gravity. We assume a linear form for f(Q) and introduce hypotheses regarding the relationship between the expansion and shear scalars, as well as the Hubble parameter and bulk viscous coefficient. The model is constrained using three observational datasets: the Hubble dataset (31 data points), the Pantheon SN dataset (1048 data points), and the BAO dataset (6 data points). The calculated cosmological parameters indicate expected behavior for matter-energy density and bulk viscous pressure, supporting the universe's accelerating expansion. Diagnostic tests suggest that the model aligns with a Lambda CDM model in the far future and resides in the quintessence region. These findings are consistent with recent observational data and contribute to our understanding of cosmic evolution within the context of modified gravity and bulk viscosity.
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页数:21
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