On the Origin of the Bimodal Rotational Velocity Distribution in Stellar Clusters: Rotation on the Pre-Main Sequence
arXiv:2005.01779 · doi:10.1093/mnras/staa1332
Abstract
We address the origin of the observed bimodal rotational distribution of stars in massive young and intermediate age stellar clusters. This bimodality is seen as split main sequences at young ages and also has been recently directly observed in the distribution of stars within massive young and intermediate age clusters. Previous models have invoked binary interactions as the origin of this bimodality, although these models are unable to reproduce all of the observational constraints on the problem. Here we suggest that such a bimodal rotational distribution is set up early within a cluster's life, i.e., within the first few Myr. Observations show that the period distribution of low-mass ($\la 2 M_\odot$) pre-main sequence (PMS) stars is bimodal in many young open clusters and we present a series of models to show that if such a bimodality exists for stars on the PMS that it is expected to manifest as a bimodal rotational velocity (at fixed mass/luminosity) on the main sequence for stars with masses in excess of ~\msun. Such a bimodal period distribution of PMS stars may be caused by whether stars have lost (rapid rotators) or been able to retain (slow rotators) their circumstellar discs throughout their PMS lifetimes. We conclude with a series of predictions for observables based on our model.
6 pages, 2 figures, accepted for publication in MNRAS
References in corpus (24)
- Weak magnetic fields in Ap/Bp stars: Evidence for a dipole field lower limit and a tentative interpretation of the magnetic dichotomy
- The Mass-Dependence of Angular Momentum Evolution in Sun-Like Stars
- The MiMeS survey of magnetism in massive stars: Magnetic analysis of the O-type stars
- A double main sequence turn-off in the rich star cluster NGC 1846 in the Large Magellanic Cloud
- The Photoevaporation of Discs Around Young Stars in Massive Clusters
- The chemical composition of red giant stars in four intermediate-age clusters of the Large Magellanic Cloud
- A Correlation Between Pre-Main Sequence Stellar Rotation Rates and IRAC Excesses in Orion
- The core binary fractions of star clusters from realistic simulations
- NGC 1866: First Spectroscopic Detection of Fast Rotating Stars in a Young LMC Cluster
- Can habitable planets form in clustered environments?
- Strong effect of the cluster environment on the size of protoplanetary discs?
- A high fraction of Be stars in young massive clusters: evidence for a large population of near-critically rotating stars
- Effects of close binary evolution on the main-sequence morphology of young star clusters
- Stars caught in the braking stage in young Magellanic Clouds clusters
- How stellar rotation shapes the colour magnitude diagram of the massive intermediate-age star cluster NGC 1846
- Testing the Disk Regulation Paradigm with Spitzer Observations. I. Rotation Periods of Pre-main Sequence Stars in the IC 348 Cluster
- The effects of surface fossil magnetic fields on massive star evolution: II. Implementation of magnetic braking in MESA and implications for the evolution of surface rotation in OB stars
- Extended Main Sequence Turnoffs in Intermediate-Age Star Clusters: Stellar Rotation diminishes, but does not eliminate, Age Spreads
- Discrepancies in the ages of young star clusters; evidence for mergers?
- Stellar Rotation in Field and Cluster B-Stars
- Disappearance of the extended main sequence turn-off in intermediate age clusters as a consequence of magnetic braking
- Stellar models and isochrones from low-mass to massive stars including pre-main sequence phase with accretion
- Investigating the rotational evolution of young, low mass stars using Monte Carlo simulations
- The radial distributions of the two main-sequence components in the young massive star cluster NGC 1856
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- Stellar mergers as the origin of the blue main-sequence band in young star clusters
- The IACOB project. VII. The rotational properties of Galactic massive O-type stars revisited
- The effects of stellar rotation along the main sequence of the 100 Myr old massive cluster NGC 1850
- Exploring the role of binarity in the origin of the bimodal rotational velocity distribution in stellar clusters
- The effects of surface fossil magnetic fields on massive star evolution: IV. Grids of models at Solar, LMC, and SMC metallicities
- The role of binarity and stellar rotation in the split main sequence of NGC 2422
- Boron depletion in Galactic early B-type stars reveals two different main sequence star populations
- On the origin of UV-dim stars: a population of rapidly rotating shell stars?
- Exploring the stellar rotation of early-type stars in the LAMOST Medium-Resolution Survey. II. Statistics
- Hubble Space Telescope survey of Magellanic Cloud star clusters. UV-dim stars in young clusters
- Tracing the evolution of short-period binaries with super-synchronous fast rotators
- Binary-driven stellar rotation evolution at the main-sequence turn-off in star clusters
- On the origin of the split main sequences of the young massive cluster NGC 1856
- Extreme mass ratios and fast rotation in three massive binaries
- Hubble Space Telescope survey of Magellanic Cloud star clusters. Binaries among the split main sequences of NGC 1818, NGC 1850, and NGC 2164
- Empirical Constraints on Core Collapse Supernova Yields using Very Metal Poor Damped Lyman Alpha Absorbers
- The spatial distributions of blue main-sequence stars in Magellanic Cloud star clusters
- Binarity at LOw Metallicity (BLOeM): Projected rotational velocities
- Extended Main-Sequence Turnoff and Red Clump in intermediate-age star clusters: A study of NGC 419
- Extended Main Sequences in Star Clusters
- Asymmetric emissions of neutrinos in the cooling of rotating proto-neutron stars
- The impact of stellar rotations and binaries on the shape of upper main sequence near turn off in open cluster NGC\,6067
- Rotational Velocities and Radii Estimates of Low-Mass Pre-Main Sequence Stars in NGC 2264