General virial theorem for modified-gravity MOND
arXiv:1311.2579 · doi:10.1103/PhysRevD.89.024016
Abstract
An important and useful relation is known to hold in two specific MOND theories. It pertains to low-acceleration, isolated systems of pointlike masses, m_p, at positions r_p, subject to gravitational forces F_p. It reads sum_p r_p.F_p=-(2/3)(Ga0)^{1/2}[(\sum_p m_p)^{3/2}-\sum_p m_p^{3/2}]; a0 is the MOND acceleration constant. Here I show that this relation holds in the nonrelativistic limit of any modified-gravity MOND theory. It follows from only the basic tenets of MOND (as applied to such theories): departure from standard dynamics at accelerations below a0, and space-time scale invariance in the nonrelativistic, low-acceleration limit. This implies space-dilatation invariance of the static, gravitational-field equations, which, in turn, leads to the above point-mass virial relation. Thus, the various MOND predictions and tests based on this relation hold in any modified-gravity MOND theory. Since we do not know that any of the existing MOND theories point in the right direction, it is important to identify such predictions that hold in a much larger class of theories. Among these predictions are the MOND two-body force for arbitrary masses, and a general mass-velocity-dispersion relation of the form sigma^2=(2/3)(MGa0)^{1/2}[1-\sum_p (m_p/M)^{3/2}], where M is the total mass.
7 pages, expanded discussion, version to be published in Phys. Rev. D
References in corpus (4)
Cited by in corpus (22)
- From galactic bars to the Hubble tension: weighing up the astrophysical evidence for Milgromian gravity
- MOND theory
- Electromagnetic Field and Cylindrical Compact Objects in Modified Gravity
- MOND vs. dark matter in light of historical parallels
- MOND in galaxy groups: a superior sample
- Cosmological variation of the MOND constant: secular effects on galactic systems
- Models of modified-inertia formulation of MOND
- Tripotential MOND theories
- Generalizations of Quasilinear MOND (QUMOND)
- MOND in galaxy groups
- Deep-MOND polytropes
- Spherical collapse and virialization in gravities
- Virial theorem in clusters of galaxies with MOND
- Central-surface-densities correlation in general MOND theories
- Galaxy groups in the presence of Cosmological Constant: Increasing the Masses of Groups
- Asymmetry of the tidal tails of open star clusters in direct N-body integrations in Milgrom-law dynamics
- Probing Modified Gravity with Entanglement of Microspheres
- The p-Laplacian as a Framework for Generalizing Newtonian Gravity and MoND
- Is MOND necessarily nonlinear?
- Numerical solutions of the complete two-body system in QUMOND
- Fast particle-mesh code for Milgromian dynamics
- Examining Baryonic Faber-Jackson Relation in Galaxy Groups