activity
20162026
most citedTrans-Planckian censorship, inflation and excited initial states for perturbations

63 citations · 489 across the 44 of their papers we have counts for

collaborators
Showing gr-qcShow all

33 papers · 1 filter

gr-qc2026

Black holes in effective loop quantum gravity: Hawking radiation

Idrus Husin Belfaqih, Martin Bojowald, Suddhasattwa Brahma +1

Emergent modified gravity provides a covariant framework for holonomy effects in models of loop quantum gravity with consistent black hole solutions coupled to a scalar field. Seve…

gr-qc2025

Twisting inflation to sub-Planckian axion decay constants

Peter Adshead, Suddhasattwa Brahma, Indranil Das

We study pseudoscalar inflation in the Einstein-Cartan-Palatini (first-order) formulation of gravity while allowing for torsion. We introduce two non-minimal interactions in the gr…

gr-qc2025

Hawking evaporation and the fate of black holes in loop quantum gravity

Idrus Husin Belfaqih, Martin Bojowald, Suddhasattwa Brahma +1

A recent covariant formulation, that includes non-perturbative effects from loop quantum gravity (LQG) as self-consistent effective models, has revealed the possibility of non-sing…

gr-qc2024★ 3 cited

Lessons for loop quantum gravity from emergent modified gravity

Idrus Husin Belfaqih, Martin Bojowald, Suddhasattwa Brahma +1

Most of the potential physical effects of loop quantum gravity have been derived in effective models that modify the constraints of canonical general relativity in specific forms.…

gr-qc2024★ 1 cited

Black holes in effective loop quantum gravity: Covariant holonomy modifications

Idrus Husin Belfaqih, Martin Bojowald, Suddhasattwa Brahma +1

Emergent modified gravity provides a covariant, effective framework for obtaining spherically symmetric black hole solutions in models of loop quantum gravity with scale-dependent…

gr-qc2023

Probing the curvature of the cosmos from quantum entanglement due to gravity

Suddhasattwa Brahma, Abhinove Nagarajan Seenivasan

If gravity is fundamentally quantum, any two quantum particles must get entangled with each other due to their mutual interaction through gravity. This phenomenon, dubbed gravity-m…