On the functional form of the radial acceleration relation

Author:

Desmond Harry1ORCID,Bartlett Deaglan J23ORCID,Ferreira Pedro G3

Affiliation:

1. Institute of Cosmology & Gravitation, University of Portsmouth , Dennis Sciama Building, Portsmouth, PO1 3FX, UK

2. CNRS & Sorbonne Université, Institut d’Astrophysique de Paris (IAP) , UMR 7095, 98 bis bd Arago, F-75014 Paris, France

3. Astrophysics, University of Oxford , Denys Wilkinson Building, Keble Road, Oxford OX1 3RH, UK

Abstract

ABSTRACTWe apply a new method for learning equations from data – Exhaustive Symbolic Regression (ESR) – to late-type galaxy dynamics as encapsulated in the radial acceleration relation (RAR). Relating the centripetal acceleration due to baryons, gbar, to the total dynamical acceleration, gobs, the RAR has been claimed to manifest a new law of nature due to its regularity and tightness in agreement with Modified Newtonian Dynamics (MOND). Fits to this relation have been restricted by prior expectations to particular functional forms, while ESR affords an exhaustive and nearly prior-free search through functional parameter space to identify the equations optimally trading accuracy with simplicity. Working with the SPARC data, we find the best functions typically satisfy gobs ∝ gbar at high gbar, although the coefficient of proportionality is not clearly unity and the deep-MOND limit $g_\text{obs}\propto \sqrt{g_\text{bar}}$ as gbar → 0 is little evident at all. By generating mock data according to MOND with or without the external field effect, we find that symbolic regression would not be expected to identify the generating function or reconstruct successfully the asymptotic slopes. We conclude that the limited dynamical range and significant uncertainties of the SPARC RAR preclude a definitive statement of its functional form, and hence that this data alone can neither demonstrate nor rule out law-like gravitational behaviour.

Funder

STFC

Oriel College Oxford

European Research Council

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Deep Symbolic Regression for Physics Guided by Units Constraints: Toward the Automated Discovery of Physical Laws;The Astrophysical Journal;2023-12-01

2. The underlying radial acceleration relation;Monthly Notices of the Royal Astronomical Society;2023-10-10

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