Gaps in globular cluster streams: giant molecular clouds can cause them too
arXiv:1606.02715 · doi:10.1093/mnrasl/slw148
Abstract
As a result of their internal dynamical coherence, thin stellar streams formed by disrupting globular clusters (GCs) can act as detectors of dark matter (DM) substructure in the Galactic halo. Perturbations induced by close flybys amplify into detectable density gaps, providing a probe both of the abundance and of the masses of DM subhaloes. Here, we use N-body simulations to show that the Galactic population of giant molecular clouds (GMCs) can also produce gaps (and clumps) in GC streams, and so may confuse the detection of DM subhaloes. We explore the cases of streams analogous to the observed Palomar 5 and GD1 systems, quantifying the expected incidence of structure caused by GMC perturbations. Deep observations should detect such disturbances regardless of the substructure content of the Milky Way's halo. Detailed modelling will be needed to demonstrate that any detected gaps or clumps were produced by DM subhaloes rather than by molecular clouds.
MNRASL accepted, conclusions unchanged, new observationally-based GMC model
References in corpus (8)
- Detection of a 63 Degree Cold Stellar Stream in the Sloan Digital Sky Survey
- Globular Cluster Streams as Galactic High-Precision Scales - The Poster Child Palomar 5
- A 22 Degree Tidal Tail for Palomar 5
- Forensics of Subhalo-Stream Encounters: The Three Phases of Gap Growth
- The inner structure of haloes in Cold+Warm dark matter models
- Dipping Our Toes in the Water: First Models of GD-1 as a Stream
- On feathers, bifurcations and shells: the dynamics of tidal streams across the mass scale
- An Orbit Fit for the Grillmair Dionatos Cold Stellar Stream
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- The Streams of the Gaping Abyss: A population of entangled stellar streams surrounding the Inner Galaxy
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- Stellar streams as gravitational experiments II. Asymmetric tails of globular cluster streams
- Kinematics of the Palomar 5 stellar stream from RR Lyrae stars
- Feeling the pull, a study of natural Galactic accelerometers. II: kinematics and mass of the delicate stellar stream of the Palomar 5 globular cluster
- The e-TidalGCs Project: Modeling the extra-tidal features generated by Galactic globular clusters
- Fluctuations of the gravitational field generated by a random population of extended substructures
- The Pristine survey -- XVII. The C-19 stream is dynamically hot and more extended than previously thought
- Milky Way archaeology using RR Lyrae and type II Cepheids I. The Orphan stream in 7D using RR Lyrae stars
- The structure of accreted stellar streams
- Quantifying tidal stream disruption in a simulated Milky Way
- The Milky Way, Coming into Focus: Precision Astrometry Probes its Evolution, and its Dark Matter
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- Star Streams and the Assembly History of the Galaxy
- On -body simulations of globular cluster stream
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- The influence of dark matter halo on the stellar stream asymmetry via dynamical friction
- Asymmetry of the tidal tails of open star clusters in direct N-body integrations in Milgrom-law dynamics
- Multi-wavelength observations of the Galactic X-ray binaries IGR J20155+3827 and Swift J1713.4-4219
- walter: A Tool for Predicting Resolved Stellar Population Observations with Applications to the Roman Space Telescope
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- No Stream Left Unscathed: The imprint of a host galaxy