Papers
Topics
Authors
Recent
Search
2000 character limit reached

Constraining Modified Mass-to-Horizon Cosmology Through Primordial Inflationary Observables

Published 10 Sep 2026 in gr-qc and hep-th | (2609.11221v1)

Abstract: We investigate slow-roll inflation in a modified cosmological framework inspired by a generalized mass-to-horizon relation (MHR), M=γc<sup>2</sup>L<sup>n/GM=γ{c<sup>2</sup> L<sup>n}/{G}, where nn is a real parameter and γγ a dimensional constant. Using Padmanabhan's emergence paradigm, we derive the modified Friedmann equations for a flat FRW universe and analyze the dynamics of a canonical scalar field (inflaton) under the slow-roll approximation. We study the resulting inflationary phenomenology for power-law and Starobinsky potentials. For power-law potentials, the MHR modification fails to reconcile these models with current CMB constraints on rr and nsn_s. In contrast, Starobinsky inflation exhibits significant sensitivity to deviations from n=1n=1. A perturbative analysis (n=1+Δn=1+Δ) yields corrections to inflationary observables. We observe that the scalar power-spectrum normalization, under a fixed-Starobinsky prescription, imposes the stringent constraint 0.960n1.0400.960 \lesssim n \lesssim 1.040 for N=60N=60 efolds. This is considerably tighter than spectral-index bounds. Our results establish inflation, particularly Starobinsky-like models, as a sensitive probe of generalized horizon thermodynamics and departures from standard MHR scaling.

Summary

No one has generated a summary of this paper yet.

Paper to Video (Beta)

No one has generated a video about this paper yet.

Whiteboard

No one has generated a whiteboard explanation for this paper yet.

Continue Learning

We haven't generated follow-up questions for this paper yet.

Tweets

Sign up for free to view the 1 tweet with 0 likes about this paper.