Observational constraints on Tsallis modified gravity
arXiv:2106.15551 · doi:10.1093/mnras/stab2671
Abstract
The thermodynamics-gravity conjecture reveals that one can derive the gravitational field equations by using the first law of thermodynamics and vice versa. Considering the entropy associated with the horizon in the form of non-extensive Tsallis entropy, here we first derive the corresponding gravitational field equations by applying the Clausius relation to the horizon. We then construct the Friedmann equations of Friedmann-Lemaître-Robertson-Walker (FLRW) universe based on Tsallis modified gravity (TMG). Moreover, in order to constrain the cosmological parameters of TMG model, we use observational data, including Planck cosmic microwave background (CMB), weak lensing, supernovae, baryon acoustic oscillations (BAO), and redshift-space distortions (RSD) data. Numerical results indicate that TMG model with a quintessential dark energy is more compatible with the low redshift measurements of large scale structures by predicting a lower value for the structure growth parameter with respect to CDM model. This implies that TMG model would slightly alleviate the tension.
8 pages, 4 figures, Accepted for publication in MNRAS
References in corpus (26)
- Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM
- Cosmic Distances Calibrated to 1% Precision with Gaia EDR3 Parallaxes and Hubble Space Telescope Photometry of 75 Milky Way Cepheids Confirm Tension with LambdaCDM
- Thermodynamic Behavior of Friedmann Equation at Apparent Horizon of FRW Universe
- Friedmann Equations of FRW Universe in Scalar-tensor Gravity, f(R) Gravity and First Law of Thermodynamics
- Thermodynamic route to Field equations in Lanczos-Lovelock Gravity
- Quantum Tunneling and Back Reaction
- Thermodynamical Properties of Apparent Horizon in Warped DGP Braneworld
- Deep Connection Between Thermodynamics and Gravity in Gauss-Bonnet Braneworld
- Friedmann Equations from Entropic Force
- Interacting Dark Sector and Precision Cosmology
- Entropy of Null Surfaces and Dynamics of Spacetime
- Einstein's equations as a thermodynamic identity: The cases of stationary axisymmetric horizons and evolving spherically symmetric horizons
- Black hole quantum tunnelling and black hole entropy correction
- Thermodynamics of apparent horizon and modified Friedman equations
- Entropic Corrections to Friedmann Equations
- Power-law corrections to entanglement entropy of horizons
- Statistical Origin of Gravity
- Notes on Entropy Force in General Spherically Symmetric Spacetimes
- Entropic Corrections to Einstein Equations
- Cosmological Constraints on the Modified Entropic Force Model
- Entropic force and entanglement system
- Emergence and Expansion of Cosmic Space as due to the Quest for Holographic Equipartition
- Entropic force, holography and thermodynamics for static space-times
- New explanation for accelerated expansion and flat galactic rotation curves
- The holographic screen at low temperatures
- Constraints on Tsallis Cosmology from Big Bang Nucleosynthesis and Dark Matter Freeze-out