collaborators

5 papers

astro-ph.HE2026

Magnetorotational instabilities in solids: Application to neutron-star crusts

Arthur G. Suvorov, Thomas Celora, Kostas D. Kokkotas

The magnetorotational instability can generate strong, turbulent substructure within magnetized shear flows. The efficacy of the mechanism as a function of microphysical aspects of…

gr-qc2026

Action based approach to dissipative relativistic fluid systems

G. L. Comer, N. Andersson, T. Celora +1

We develop an action principle for a relativistic two-fluid system with dissipation. The specific constituents of the model - which serves as a proof of principle - are particles a…

astro-ph.HE2025

Impact of magnetic field gradients on the development of the MRI: Applications to binary neutron star mergers and proto-planetary disks

T. Celora, C. Palenzuela, D. Viganò +1

The magneto-rotational instability (MRI) is widely believed to play a central role in generating large-scale, poloidal magnetic fields during binary neutron star mergers. However,…

astro-ph.HE2025

Higher-level large-eddy filtering strategy for general relativistic fluid simulations

Thomas Celora, Nils Andersson, Ian Hawke +2

Nonlinear simulations of neutron star mergers are complicated by the need to represent turbulent dynamics. As we cannot (yet) perform simulations that resolve accurately both the g…

astro-ph.HE2025

Covariant approach to relativistic large-eddy simulations: Lagrangian filtering

T. Celora, M. J. Hatton, I. Hawke +1

We present a proof-of-principle implementation of the first fully covariant filtering scheme applied to relativistic fluid turbulence. The filtering is performed with respect to sp…