Integrated Mass Loss of Evolved Stars in M4 using Asteroseismology
arXiv:2207.02406 · doi:10.1093/mnras/stac1918
Abstract
Mass loss remains a major uncertainty in stellar modelling. In low-mass stars, mass loss is most significant on the red giant branch (RGB), and will impact the star's evolutionary path and final stellar remnant. Directly measuring the mass difference of stars in various phases of evolution represents one of the best ways to quantify integrated mass loss. Globular clusters (GCs) are ideal objects for this. M4 is currently the only GC for which asteroseismic data exists for stars in multiple phases of evolution. Using K2 photometry, we report asteroseismic masses for 75 red giants in M4, the largest seismic sample in a GC to date. We find an integrated RGB mass loss of , equivalent to a Reimers' mass-loss coefficient of . Our results for initial mass, horizontal branch mass, , and integrated RGB mass loss show remarkable agreement with previous studies, but with higher precision using asteroseismology. We also report the first detections of solar-like oscillations in early asymptotic giant branch (EAGB) stars in GCs. We find an average mass of , significantly lower than predicted by models. This suggests larger-than-expected mass loss on the horizontal branch. Alternatively, it could indicate unknown systematics in seismic scaling relations for the EAGB. We discover a tentative mass bi-modality in the RGB sample, possibly due to the multiple populations. In our red horizontal branch sample, we find a mass distribution consistent with a single value. We emphasise the importance of seismic studies of GCs since they could potentially resolve major uncertainties in stellar theory.
15 pages, 12 figures, accepted by MNRAS
References in corpus (38)
- Array Programming with NumPy
- Modules for Experiments in Stellar Astrophysics (MESA)
- The Transiting Exoplanet Survey Satellite
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- The K2 Mission: Characterization and Early results
- An Analysis of the Shapes of Interstellar Extinction Curves. V. The IR-Through-UV Curve Morphology
- A Technique for Extracting Highly Precise Photometry for the Two-Wheeled Kepler Mission
- A new implementation of the infrared flux method using the 2MASS catalogue
- Spectroscopic and Photometric evidence of two stellar populations in the Galactic Globular Cluster NGC6121 (M4)
- Accurate distances to Galactic globular clusters through a combination of Gaia EDR3, HST and literature data
- Spitzer Secondary Eclipses of the Dense, Modestly-irradiated, Giant Exoplanet HAT-P-20b Using Pixel-Level Decorrelation
- EVEREST: Pixel Level Decorrelation of K2 Light curves
- Mixed modes in red giants: a window on stellar evolution
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. XIX. A Chemical Tagging of the Multiple Stellar Populations Over the Chromosome Maps
- Mass loss on the red giant branch: the value and metallicity dependence of Reimers' η in globular clusters
- NGC 6819: testing the asteroseismic mass scale, mass loss, and evidence for products of non-standard evolution
- Optical and Near-Infrared UBVRIJHK Photometry for the RR Lyrae stars in the Nearby Globular Cluster M4 (NGC 6121)
- The First Empirical Mass Loss Law for Population II Giants
- The K2 Galactic Archaeology Program Data Release 1: Asteroseismic results from Campaign 1
- The K2 M67 Study: Revisiting old friends with K2 reveals oscillating red giants in the open cluster M67
- Testing the radius scaling relation with DR2 in the field
- The blue stragglers formed via mass transfer in old open clusters
- A New Method for the Asteroseismic Determination of the Evolutionary State of Red-Giant Stars
- Mass Outflow from Red Giant Stars in M13, M15, and M92
- An empirical mass-loss law for Population II giants from the Spitzer-IRAC survey of Galactic globular clusters
- Mass Outflow and Chromospheric Activity of Red Giant Stars in Globular Clusters I: M15
- Solar-like oscillations in a metal-poor globular cluster with the HST
- Testing the intrinsic scatter of the asteroseismic scaling relations with Kepler red giants
- The K2 Galactic Archaeology Program Data Release 2: Asteroseismic results from campaigns 4, 6, & 7
- Survey of multiple populations in globular clusters among very low-mass stars
- Far-infrared study of K giants in the solar neighborhood: Connection between Li enrichment and mass-loss
- Mass loss of different stellar populations in Globular Clusters: the case of M4
- Asteroseismology of overmassive, undermassive, and potential past members of the open cluster NGC6791
- Multiple populations along the asymptotic giant branch of the globular cluster M 4
- A search for solar-like oscillations in K giants in the globular cluster M4
- NGC 6752 AGB Stars Revisited: I. Improved AGB temperatures remove apparent overionisation of Fe I
- Multiple populations in globular clusters: Unified efforts from stellar evolution and chemical evolution models
- Ultralow-amplitude RR Lyrae Stars in M4
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