Modified Mukhanov-Sasaki equation and primordial perturbations in κ-deformed non-commutative space-time
Yang Lei, Vishnu Rajagopal, Puxun Wu
Abstract
We study the inflationary primordial perturbations in κ-Minkowski non-commutative space-time, a Lie-algebraic type deformation of canonical space-time motivated by quantum gravity scenarios. Employing the κ-deformed star product formalism, we construct the bilinear action for curvature perturbations and derive the κ-deformed Mukhanov-Sasaki equation and obtain the perturbative solutions. Further, we compute the primordial power spectrum and spectral index, showing that the leading order corrections to the power spectrum induces scale-dependent term proportional to ( k)2. The spectral index also exhibits an explicit k dependence, which persists even when the slow-roll parameters are constant. We also perform a Bayesian MCMC analysis using ACT DR6 data and constrain the κ-deformation length scale to λ=6.32+6.00-4.30×10-30m at 1σ CL, approximately four orders of magnitude larger than the Planck scale, demonstrating that the κ-deformed space-time offers a potential window into quantum gravity phenomenology through precision cosmology.
Create a lesson
Related papers
Operator-Level Quantum-Classical Correspondence in Relativistic Quantum Theory and Curved Spacetime
Pankaj Sheoran, Gopal Kashyap, Sanjay Siwach
Thin-Shell Black Bounce
Leandro A. Lessa, Renan B. Magalhães, Gonzalo J. Olmo
Black Hole Perturbation Toolkit: Low frequency and post-Newtonian expansions
Jakob Neef, Chris Kavanagh, Adrian Ottewill
Circular acceleration in Minkowski spacetime: thermality versus finite size
Cameron R D Bunney, Jorma Louko
Kerr-Degenerate Shadows and Distinct Strong-Deflection Lensing in Rotating Hayward-like and Bardeen-like Geometries
Chen-Hung Hsiao, Limei Yuan, Yidun Wan
Reconnection of Gravitational Fields
Luca Comisso, Felipe A. Asenjo