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.IM2026

gevolution 2.0: GPU-accelerated relativistic N-body simulations for cosmology

Julian Adamek, Øyvind Christiansen

High-performance computing is increasingly dominated by hardware acceleration using Graphics Processing Units (GPUs). To take advantage of this long-term trend, we implement a majo…

astro-ph.CO2026

Perturbative and numerical study of nonlinear relativistic effects in weak lensing

Matteo Magi, Francesca Lepori, Julian Adamek

The standard weak lensing formalism assumes that the lensing map relating the observed image of a source to its intrinsic shape depends only on the deflection angle. We show that t…

astro-ph.CO2026

Angular bispectrum of matter number counts in cosmic structures

Thomas Montandon, Enea Di Dio, Cornelius Rampf +1

The bispectrum of galaxy number counts is a key probe of large-scale structure, offering insights into the initial conditions of the Universe, the nature of gravity, and cosmologic…

astro-ph.CO2025

Transverse Velocities in Real-Time Cosmology: Position Drift in Relativistic N-Body Simulations

Alexander Oestreicher, Chris Clarkson, Julian Adamek +1

The era of real-time cosmology has begun. It is now possible to directly measure the apparent drift of high-redshift astronomical sources across the sky . Th…

astro-ph.CO2025

Redshift Drift in Relativistic N-Body Simulations

Alexander Oestreicher, Chris Clarkson, Julian Adamek +1

The cosmological redshift drift promises to be the first observable directly measuring the evolution of the cosmic expansion rate and should be detectable with upcoming surveys by…