The tightening of wide binaries in dSph galaxies through dynamical friction as a test of the Dark Matter hypothesis
arXiv:0803.1507 · doi:10.1111/j.1365-2966.2008.13373.x
Abstract
We estimate the timescales for orbital decay of wide binaries embedded within dark matter halos, due to dynamical friction against the dark matter particles. We derive analytical scalings for this decay and calibrate and test them through the extensive use of N-body simulations, which accurately confirm the predicted temporal evolution. For density and velocity dispersion parameters as inferred for the dark matter halos of local dSph galaxies, we show that the decay timescales become shorter than the ages of the dSph stellar populations for binary stars composed of 1 stars, for initial separations larger than 0.1 pc. Such wide binaries are conspicuous and have been well measured in the solar neighborhood. The prediction of the dark matter hypothesis is that they should now be absent from stellar populations embedded within low velocity dispersion, high density dark mater halos, as currently inferred for the local dSph galaxies, having since evolved into tighter binaries. Relevant empirical determinations of this will become technically feasible in the near future, and could provide evidence to discriminate between dark matter particle halos or modified gravitational theories, to account for the high dispersion velocities measured for stars in local dSph galaxies.
9 pages, 2 figures, Accepted for publication in MNRAS
References in corpus (21)
- The Progenitors of Short Gamma-Ray Bursts
- Field-theoretical formulations of MOND-like gravity
- On the Proof of Dark Matter, the Law of Gravity and the Mass of Neutrinos
- Dynamical friction in constant density cores: a failure of the Chandrasekhar formula
- Tidal dwarf galaxies as a test of fundamental physics
- Stellar kinematics in the remote Leo II dwarf spheroidal galaxy -- Another brick in the wall
- Confrontation of MOND with the rotation curves of early-type disc galaxies
- Insight into the baryon-gravity relation in galaxies
- An extensive study of dynamical friction in dwarf galaxies: the role of stars, dark matter, halo profiles and MOND
- Velocity dispersion around ellipticals in MOND
- Interaction of massive black hole binaries with their stellar environment: II. Loss-cone depletion and binary orbital decay
- Milky Way potentials in CDM and MOND. Is the Large Magellanic Cloud on a bound orbit?
- An gravitation for galactic environments
- Coincidences of Dark Energy with Dark Matter -- Clues for a Simple Alternative?
- Dynamical friction in modified Newtonian dynamics
- Rings and shells of "dark matter" as MOND artifacts
- Vertical dynamics of disk galaxies in MOND
- Detailed Chemical Evolution of Carina and Sagittarius Dwarf Spheroidal Galaxies
- Observed Properties of Dark Matter: dynamical studies of dSph galaxies
- Tidal radii and escape speeds in dwarf spheroidal galaxies under MOND and dark halos compared
- The thickness of HI in galactic discs under MOND: theory and application to the Galaxy
Cited by in corpus (7)
- The formation of very wide binaries during the star cluster dissolution phase
- Wide Binaries in Tycho-{\it Gaia}: Search Method and the Distribution of Orbital Separations
- Emergence of the mass discrepancy-acceleration relation from dark matter-baryon interactions
- Horizon growth of supermassive black hole seeds fed with collisional dark matter
- An upper limit to the central density of dark matter haloes from consistency with the presence of massive central black holes
- Two-Point Separation Functions for Modeling Wide Binary Systems in Nearby Dwarf Galaxies
- Dark Matter as an active gravitational agent in cloud complexes