Electromagnetic Observables of Weakly Collisional Black Hole Accretion

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Dhruv, Vedant, Prather, Ben, Chandra, Mani, Joshi, Abhishek V., Gammie, Charles F.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866915550025744384
author Dhruv, Vedant
Prather, Ben
Chandra, Mani
Joshi, Abhishek V.
Gammie, Charles F.
author_facet Dhruv, Vedant
Prather, Ben
Chandra, Mani
Joshi, Abhishek V.
Gammie, Charles F.
contents The black holes in the Event Horizon Telescope sources Messier 87* and Sagittarius A* (SgrA*) are embedded in a hot, collisionless plasma that is fully described in kinetic theory yet is usually modeled as an ideal, magnetized fluid. In this Letter, we present results from a new set of weakly collisional fluid simulations in which leading order kinetic effects are modeled as viscosity and heat conduction. Consistent with earlier, lower-resolution studies, we find that overall flow dynamics remain very similar between ideal and non-ideal models. For the first time, we synthesize images and spectra of SgrA* from weakly collisional models -- assuming an isotropic, thermal population of electrons -- and find that these remain largely indistinguishable from ideal fluid predictions. However, most weakly collisional models exhibit lower light curve variability, with all magnetically dominated models showing a small but systematic decrease in variability.
format Preprint
id arxiv_https___arxiv_org_abs_2510_11365
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Electromagnetic Observables of Weakly Collisional Black Hole Accretion
Dhruv, Vedant
Prather, Ben
Chandra, Mani
Joshi, Abhishek V.
Gammie, Charles F.
High Energy Astrophysical Phenomena
Plasma Physics
The black holes in the Event Horizon Telescope sources Messier 87* and Sagittarius A* (SgrA*) are embedded in a hot, collisionless plasma that is fully described in kinetic theory yet is usually modeled as an ideal, magnetized fluid. In this Letter, we present results from a new set of weakly collisional fluid simulations in which leading order kinetic effects are modeled as viscosity and heat conduction. Consistent with earlier, lower-resolution studies, we find that overall flow dynamics remain very similar between ideal and non-ideal models. For the first time, we synthesize images and spectra of SgrA* from weakly collisional models -- assuming an isotropic, thermal population of electrons -- and find that these remain largely indistinguishable from ideal fluid predictions. However, most weakly collisional models exhibit lower light curve variability, with all magnetically dominated models showing a small but systematic decrease in variability.
title Electromagnetic Observables of Weakly Collisional Black Hole Accretion
topic High Energy Astrophysical Phenomena
Plasma Physics
url https://arxiv.org/abs/2510.11365