Testing Newtonian gravity with distant globular clusters: NGC1851 and NGC1904
arXiv:1008.3526 · doi:10.1051/0004-6361/201014462
Abstract
Globular clusters are useful to test the validity of Newtonian dynamics in the low acceleration regime typical of galaxies, without the complications of non-baryonic dark matter. Specifically, in absence of disturbing effects, e.g. tidal heating, their velocity dispersion is expected to vanish at large radii. If such behaviour is not observed, and in particular if, as observed in elliptical galaxies, the dispersion is found constant at large radii below a certain threshold acceleration, this might indicate a break down of Newtonian dynamics. To minimise the effects of tidal heating in this paper we study the velocity dispersion profile of two distant globular clusters, NGC 1851 and NGC 1904. The velocity dispersion profile is derived from accurate radial velocities measurements, obtained at the ESO 8m VLT telescope. Reliable data for 184 and 146 bona fide cluster star members, respectively for NGC 1851 and NGC 1904, were obtained. These data allow to trace the velocity dispersion profile up to ~2r0, where r0 is the radius at which the cluster internal acceleration of gravity is a0 = 10e-8 cm/s/s. It is found that in both clusters the velocity dispersion becomes constant beyond ~r0. These new results are fully in agreement with those found for other five globular clusters previously investigated as part of this project. Taken all together, these 7 clusters support the claim that the velocity dispersion is constant beyond r0, irrespectively of the specific physical properties of the clusters: mass, size, dynamical history, and distance from the Milky Way. The strong similarly with the constant velocity dispersion observed in elliptical galaxies beyond r0 is suggestive of a common origin for this phenomenon in the two class of objects, and might indicate a breakdown of Newtonian dynamics below a0.
Accepted for publication by A&A main journal. 12 pages, 12 figures
References in corpus (11)
- A constant dark matter halo surface density in galaxies
- Stellar populations in the Galactic bulge
- Stellar kinematics in the remote Leo II dwarf spheroidal galaxy -- Another brick in the wall
- Testing modified gravity with globular cluster velocity dispersions
- Mass distribution in nearby Abell clusters
- The non-peculiar velocity dispersion profile of the stellar system omega Centauri
- A search for spectroscopic binaries in the galactic globular cluster M4. Based on 5973 individual spectra collected at VLT
- Using globular clusters to test gravity in the weak acceleration regime: NGC 7099
- Absolute motions of globular clusters. II. [HST astrometry and VLT radial velocities in NGC6397]
- Radially extended kinematics and stellar populations of the massive ellipticals NGC1600, NGC4125 and NGC7619. Constraints on the outer dark halo density profile
- Current data on the globular cluster Palomar 14 are not inconsistent with MOND
Cited by in corpus (44)
- Modified Newtonian Dynamics (MOND): Observational Phenomenology and Relativistic Extensions
- N-body modeling of globular clusters: Masses, mass-to-light ratios and intermediate-mass black holes
- Galaxies as simple dynamical systems: observational data disfavor dark matter and stochastic star formation
- More on the structure of tidal tails
- Limits on intermediate-mass black holes in six Galactic globular clusters with integral-field spectroscopy
- Na-O anticorrelation and HB. IX. Kinematics of the program clusters. A link between systemic rotation and HB morphology?
- CNO abundances in the globular clusters NGC 1851 and NGC 6752
- Wide binaries as a critical test of Classical Gravity
- Hubble Space Telescope proper motion (HSTPROMO) catalogs of Galactic globular clusters. III. Dynamical distances and mass-to-light ratios
- MIKiS: the Multi-Instrument Kinematic Survey of Galactic Globular Clusters. I. Velocity dispersion profiles and rotation signals of 11 globular clusters
- The Gaia-ESO Survey: Kinematics of seven Galactic globular clusters
- The halo+cluster system of the Galactic globular cluster NGC1851
- Asymmetrical tidal tails of open star clusters: stars crossing their cluster's prah challenge Newtonian gravitation
- A dynamical study of Galactic globular clusters under different relaxation conditions
- The outskirts of globular clusters as modified gravity probes
- The velocity dispersion and mass function of the outer halo globular cluster Palomar 4
- Spectroscopic analysis of the two subgiant branches of the globular cluster NGC1851
- Flattened velocity dispersion profiles in Globular Clusters: Newtonian tides or modified gravity?
- Challenging a Newtonian prediction through Gaia wide binaries
- The Gaia-ESO Survey: Dynamical models of flattened, rotating globular clusters
- A universal velocity dispersion profile for pressure supported systems: evidence for MONDian gravity across 7 orders of magnitude in mass
- Mond - a review
- A Test of MONDian Gravity in 300 pressure supported elliptical galaxies from the MaNGA survey
- Dynamics of wide binary stars: A case study for testing Newtonian dynamics in the low acceleration regime
- Testing Weyl Gravity at Galactic and Extra-galactic Scales
- Dynamics in the outskirts of four Milky Way globular clusters: it's the tides that dominate
- Globular clusters as a probe for Weyl Conformal Gravity
- Isothermal distributions in MONDian gravity as a simple unifying explanation for the ubiquitous density profiles in tenuous stellar halos
- The MOND External Field Effect on the Dynamics of the Globular Clusters: General Considerations and Application to NGC 2419
- Virial theorem in clusters of galaxies with MOND
- Application of three-body stability to globular clusters: II. Observed velocity dispersions
- Constraining MOND Using the Vertical Motion of Stars in the Solar Neighborhood
- A Phase Space Diagram for Gravity
- Gravitational anomalies signaling the breakdown of classical gravity
- Gas expulsion in MOND: the possible origin of diffuse globular clusters and ultra-faint dwarf galaxies
- A new perspective on MOND
- Can Massive Gravity Explain the Mass Discrepancy - Acceleration Relation of Disk Galaxies?
- The kinematics of star clusters undergoing gas expulsion in Newtonian and Milgromian dynamics
- Observational dynamics of low-mass stellar systems
- Formation of collisional ring galaxies in Milgromian dynamics
- Central MONDian spike in spherically symmetric systems
- The galactic acceleration scale is imprinted on globular cluster systems of early-type galaxies of most masses and on red and blue globular cluster subpopulations
- The ESO-VLT MIKiS survey reloaded: velocity dispersion profile and rotation curve of NGC 1904
- On the Orbital Velocity of Isolated Galaxy Pairs: a test of gravity in the low acceleration regime