About
I am a research associate specializing in the fundamental nature of gravity, with a particular focus on modified gravity theories. My work centers on understanding the late-time acceleration of the universe by employing dynamical systems techniques and perturbation analysis. I also investigate the Hubble tension problem through cosmological observations, utilizing advanced statistical methods and diverse cosmological datasets. Additionally, my research explores the impact of modified gravity theories on the structure and properties of compact astrophysical objects.
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Publications (27)
- Late-time cosmic acceleration in Ricci-Gauss-Bonnet gravity via gradient descent optimization Save
- Hubble Tension and Dark Energy in Teleparallel Gauss-Bonnet Gravity: New Constraints from DESI BAO, Pantheon$^+$ and Hubble Data Save
- Hubble Tension and Dark Energy in Teleparallel Gauss-Bonnet Gravity: New Constraints from DESI BAO, Pantheon+ and Hubble Data Save
- Hubble tension and dark energy in teleparallel Gauss-Bonnet gravity: new constraints from DESI BAO, Pantheon+ and Hubble data Save
- Exploring the viability of f(Q,T) gravity: Constraining parameters with cosmological observations Save
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics Save
- Late Time Cosmic Acceleration in Modified Gravity and Gauss-Bonnet Cosmology Save
- Stable f(Q) gravity model through non-trivial connection Save
- Stability of f(Q, B) Gravity via Dynamical System Approach: A Comprehensive Bayesian Statistical Analysis Save
- Exploring the Viability of $f(Q, T)$ Gravity: Constraining Parameters with Cosmological Observations Save