Modeling Targets and Optimal Frequencies for Imaging the Shadows of Nearby Supermassive Black Holes

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Main Authors: Faggert, J. Cole, Ozel, Feryal, Psaltis, Dimitrios
Format: Preprint
Published: 2025
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author Faggert, J. Cole
Ozel, Feryal
Psaltis, Dimitrios
author_facet Faggert, J. Cole
Ozel, Feryal
Psaltis, Dimitrios
contents Horizon-scale imaging of supermassive black holes has opened a new window onto the studies of strong-field gravity and plasma physics in low-luminosity accretion flows. As future efforts aim to image fainter and smaller angular-size targets, primarily through space-based very long baseline interferometry (VLBI), it is important to identify optimal sources and observing strategies for such studies. In this work, we assess the prospects for imaging black hole shadows in a broad population of nearby supermassive black holes by modeling their accretion flows using a covariant semi-analytic model for the flow and general relativistic ray tracing. We explore the influence of black hole and accretion flow parameters on spectra, image morphology, and the critical frequency at which the flows become optically thin. We identify three general classes of sources: those that become transparent at traditional imaging frequencies; those requiring higher frequencies; and those unlikely to be transparent down to the black hole shadow in the submillimeter band. Our results will inform target selection and wavelength optimization for future VLBI arrays, where both resolution and transparency are essential for resolving black hole shadows.
format Preprint
id arxiv_https___arxiv_org_abs_2506_15783
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Modeling Targets and Optimal Frequencies for Imaging the Shadows of Nearby Supermassive Black Holes
Faggert, J. Cole
Ozel, Feryal
Psaltis, Dimitrios
High Energy Astrophysical Phenomena
Horizon-scale imaging of supermassive black holes has opened a new window onto the studies of strong-field gravity and plasma physics in low-luminosity accretion flows. As future efforts aim to image fainter and smaller angular-size targets, primarily through space-based very long baseline interferometry (VLBI), it is important to identify optimal sources and observing strategies for such studies. In this work, we assess the prospects for imaging black hole shadows in a broad population of nearby supermassive black holes by modeling their accretion flows using a covariant semi-analytic model for the flow and general relativistic ray tracing. We explore the influence of black hole and accretion flow parameters on spectra, image morphology, and the critical frequency at which the flows become optically thin. We identify three general classes of sources: those that become transparent at traditional imaging frequencies; those requiring higher frequencies; and those unlikely to be transparent down to the black hole shadow in the submillimeter band. Our results will inform target selection and wavelength optimization for future VLBI arrays, where both resolution and transparency are essential for resolving black hole shadows.
title Modeling Targets and Optimal Frequencies for Imaging the Shadows of Nearby Supermassive Black Holes
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2506.15783