The Nearly Universal Disk Galaxy Rotation Curve

Fuente: arXiv
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Hauptverfasser: Patel, Raj, Arora, Nikhil, Courteau, Stéphane, Stone, Connor, Frosst, Matthew, Widrow, Lawrence
Format: Preprint
Veröffentlicht: 2024
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author Patel, Raj
Arora, Nikhil
Courteau, Stéphane
Stone, Connor
Frosst, Matthew
Widrow, Lawrence
author_facet Patel, Raj
Arora, Nikhil
Courteau, Stéphane
Stone, Connor
Frosst, Matthew
Widrow, Lawrence
contents The Universal Rotation Curve (URC) of disk galaxies was originally proposed to predict the shape and amplitude of any rotation curve (RC) based solely on photometric data. Here, the URC is investigated with an extensive set of spatially-resolved rotation curves drawn from the PROBES-I, PROBES-II, and MaNGA data bases with matching multi-band surface brightness profiles from the DESI-LIS and WISE surveys for 3,846 disk galaxies. Common URC formulations fail to achieve an adequate level of accuracy to qualify as truly universal over fully sampled RCs. We develop neural network (NN) equivalents for the proposed URCs which predict RCs with higher accuracy, showing that URC inaccuracies are not due to insufficient data but rather non-optimal formulations or sampling effects. This conclusion remains even if the total RC sample is pruned for symmetry. The latest URC prescriptions and their NN equivalents trained on our sub-sample of 579 disk galaxies with symmetric RCs perform similarly to the URC/NN trained on the complete data sample. We conclude that a URC with an acceptable level of accuracy ($ΔV_{\rm circ} \lesssim15$ per cent) at all radii would require a detailed modelling of a galaxy's central regions and outskirts (e.g., for baryonic effects leading to contraction or expansion of any dark-matter-only halo).
format Preprint
id arxiv_https___arxiv_org_abs_2406_11987
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The Nearly Universal Disk Galaxy Rotation Curve
Patel, Raj
Arora, Nikhil
Courteau, Stéphane
Stone, Connor
Frosst, Matthew
Widrow, Lawrence
Astrophysics of Galaxies
The Universal Rotation Curve (URC) of disk galaxies was originally proposed to predict the shape and amplitude of any rotation curve (RC) based solely on photometric data. Here, the URC is investigated with an extensive set of spatially-resolved rotation curves drawn from the PROBES-I, PROBES-II, and MaNGA data bases with matching multi-band surface brightness profiles from the DESI-LIS and WISE surveys for 3,846 disk galaxies. Common URC formulations fail to achieve an adequate level of accuracy to qualify as truly universal over fully sampled RCs. We develop neural network (NN) equivalents for the proposed URCs which predict RCs with higher accuracy, showing that URC inaccuracies are not due to insufficient data but rather non-optimal formulations or sampling effects. This conclusion remains even if the total RC sample is pruned for symmetry. The latest URC prescriptions and their NN equivalents trained on our sub-sample of 579 disk galaxies with symmetric RCs perform similarly to the URC/NN trained on the complete data sample. We conclude that a URC with an acceptable level of accuracy ($ΔV_{\rm circ} \lesssim15$ per cent) at all radii would require a detailed modelling of a galaxy's central regions and outskirts (e.g., for baryonic effects leading to contraction or expansion of any dark-matter-only halo).
title The Nearly Universal Disk Galaxy Rotation Curve
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2406.11987