Star Streams in Triaxial Isochrone Potentials with Sub-Halos
arXiv:1506.00957 · doi:10.1088/0004-637X/808/1/15
Abstract
The velocity, position, and action variable evolution of a tidal stream drawn out of a star cluster in a triaxial isochrone potential containing a sub-halo population reproduces many of the orbital effects of more general cosmological halos but allows easy calculation of orbital actions. We employ a spherical shell code which we show accurately reproduces the results of a tree gravity code for a collisionless star cluster. Streams from clusters on high eccentricity orbits, , can spread out so much that the amount of material at high enough surface density to stand out on the sky may be only a few percent of the stream's total mass. Low eccentricity streams remain more spatially coherent, but sub-halos both broaden the stream and displace the centerline with details depending on the orbits allowed within the potential. Overall, the majority of stream particles have changes in their total actions of only 1-2\%, leaving the mean stream relatively undisturbed. A halo with 1\% of the mass in sub-halos typically spreads the velocity distribution about a factor of two wider than would be expected for a smooth halo. Strong density variations, "gaps", along with mean velocity offsets, are clearly detected in low eccentricity streams for even a 0.2\% sub-halo mass fraction. Around one hundred velocity measurements per kiloparsec of stream will enable tests for the presence of a local sub-halo density as small as 0.2-0.5\% of the local mass density, with about 1\% predicted for 30 kiloparsec orbital radii streams.
ApJ submitted after revisions in response to referee
References in corpus (14)
- Detection of a 63 Degree Cold Stellar Stream in the Sloan Digital Sky Survey
- On the structure of tidal tails
- Forensics of Subhalo-Stream Encounters: The Three Phases of Gap Growth
- The mechanics of tidal streams
- Milky Way Mass and Potential Recovery Using Tidal Streams in a Realistic Halo
- On feathers, bifurcations and shells: the dynamics of tidal streams across the mass scale
- Serendipitous Discovery of a Thin Stellar Stream near the Galactic Bulge in the Pan-STARRS1 3Pi Survey
- Erosion of Globular Cluster Systems: The Influence of Radial Anisotropy, Central Black Holes and Dynamical Friction
- Fitting orbits to tidal streams
- Simulating tidal streams in a high resolution dark matter halo
- Expansion Techniques for Collisionless Stellar Dynamical Simulations
- Development of multiple tidal tails around globular clusters and dwarf satellite galaxies
- Treatment of realistic tidal field in Monte Carlo simulations of star clusters
- Dynamical Properties of Collisionless Star Streams
Cited by in corpus (9)
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- Pushing down the low-mass halo concentration frontier with the Lomonosov cosmological simulations
- On the relevance of chaos for halo stars in the solar neighbourhood II
- Star Streams and the Assembly History of the Galaxy
- The time evolution of gaps in tidal streams
- Velocity Variations in the Phoenix-Hermus Star Stream
- Impact of baryons on the population of Galactic subhalos and implications for dark matter searches