collaborators

6 papers

gr-qc2026

Signatures of kinetic gravity braiding in cosmological probes of the gravitational field

Ahmad Nouri-Zonoz, Farbod Hassani, Julian Adamek +2

We study the observational signatures of kinetic gravity braiding (KGB) models in relativistic cosmological probes constructed along the past light cone. Using the relativistic

astro-ph.CO2025

Gravitational waves from dark domain walls

Øyvind Christiansen, Julian Adamek, Farbod Hassani +1

For most of cosmic history, the evolution of our Universe has been governed by the physics of a 'dark sector', consisting of dark matter and dark energy, whose properties are only…

astro-ph.CO2025

KGB-evolution: a relativistic -body code for kinetic gravity braiding models

Ahmad Nouri-Zonoz, Farbod Hassani, Emilio Bellini +1

We present KGB-evolution, a relativistic -body simulation code that extends the -evolution code by incorporating an effective field theory parameterization of kinetic gravity…

astro-ph.CO2025

Clusternets: A deep learning approach to probe clustering dark energy

Amirmohammad Chegeni, Farbod Hassani, Alireza Vafaei Sadr +2

Machine Learning (ML) algorithms are becoming popular in cosmology for extracting valuable information from cosmological data. In this paper, we evaluate the performance of a Convo…

astro-ph.CO2025

Cosmic velocity, density and halo mass function: Insights from deep learning

Saba Etezad-Razavi, Erfan Abbasgholinejad, Mohammad-Hadi Sotoudeh +3

We discuss an implementation of a deep learning framework to gain insight into dark matter (DM) structure formation. We investigate the contribution of velocity and density field i…

astro-ph.CO2025

Environmental cosmic acceleration from a phase transition in the dark sector

Øyvind Christiansen, Farbod Hassani, David F. Mota

A new degravitation mechanism within the framework of scalar tensor gravity is postulated and included by prescription. The mechanism eliminates all constant contributions from the…