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Seismic Giants in Clusters: How Well Are We Actually Doing? Jamie Tayar TASC-9/KASC-16 July 7, 2025 jtayar.github.io
Stellar Ages ●Galactic Archaeologywe want ages for hundreds of thousands or millions of stars across the Milky Way ●10% ages would be particularly valuable ●(Global) asteroseismology gives us ages, but how good are they?
Why Age Calibration? Silva Aguirre+2018 Xiang & Rix 2022 Stokholm+2023 Nataf+ 2024
Red Giant Global Seismology M Mo = ( ν max ν max ,o ) 3 ( Δ ν Δ ν o ) −4 ( Teff Teff ,o ) 1.5 R Ro = ( ν max ν max ,o ) ( Δ ν Δ ν o ) −2 ( Teff Teff ,o ) 0.5 e.g. Kjeldsen & Bedding 1995
Red Giant Global Seismology M Mo = ( ν max ν max ,o ) 3 ( Δ ν Δ ν o ) −4 ( Teff Teff ,o ) 1.5 R Ro = ( ν max ν max ,o ) ( Δ ν Δ ν o ) −2 ( Teff Teff ,o ) 0.5 Solar values calibrated to bring methods into agreement Temperature scale benchmarked to external references e.g. Pinsonneault et al. 2025 (inc. Tayar)
Red Giant Global Seismology M Mo = ( ν max ν max ,o ) 3 ( fΔ ν Δ ν Δ ν o ) −4 ( Teff Teff ,o ) 1.5 R Ro = ( ν max ν max ,o ) ( fΔ ν Δ ν Δ ν o ) −2 ( Teff Teff ,o ) 0.5 e.g. Pinsonneault et al. 2025 (inc. Tayar) Observed Δν doesn’t quite scale as mean density, use models to correct
Red Giant Global Seismology M Mo = ( f ν max ν max ν max ,o ) 3 ( fΔ ν Δ ν Δ ν o ) −4 ( Teff Teff ,o ) 1.5 R Ro = ( f ν max ν max ν max ,o ) ( fΔ ν Δ ν Δ ν o ) −2 ( Teff Teff ,o ) 0.5 e.g. Pinsonneault et al. 2025 (inc. Tayar) Resulting masses and radii are not quite right, use Gaia or clusters to correct this on average
●With Mass, Radius or logg, and composition ●Can look up in a stellar model what the age is supposed to be on the red giant branch Red Giant Global Seismology Artemis Theodoridis
Kepler TESS Theodoridis, Morales, & Tayar (2025, submitted) Artemis Theodoridis Pinsonneault, Zinn, Tayar+ (2025) >100,000 Stars >20,000 Stars
Asteroseismology In Clusters ●Global seismology only ●No additional information & priors ●Analyze stars individually ●Models from the literature Data from Reyes et al. 2025
NGC 6791 ●Original Kepler field ●Included in APOKASC-3 ●Exclude clump stars (mass loss uncertainty, see Yaguang Li’s talk) Data from Pinsonneault et al. 2025 (inc. Tayar)
Global Seismic Age Uncertainty Tayar & Joyce (2025)
Global Seismic Age Uncertainty Tayar & Joyce (2025)
Global Seismic Age Uncertainty Tayar & Joyce (2025) Should there be an fage and if so, is it a function of age and metallicity?
Age-Metallicity distribution
Age-Metallicity distribution Tayar & Joyce (2025)
Age-Metallicity distribution PLATO Tayar & Joyce (2025)
Age-Metallicity distribution PLATO
Clusters in TESS ●900+ cluster giants bright enough to potentially have detectable oscillations in TESS Carli Mankowski
Summary ●Global Asteroseismology for giants in clusters to calibrate the age scale to 10% ●8 clusters, Age: <1 Gyr-13 Gyr, Metallicity: -2.4 to +0.15 ●~30 day observing sectors, 2 years of observations = 70 days/ cluster, 15-120 giants per cluster, 10% age per cluster ●Custom models for consistent cluster and asteroseismic age scales ●Calibrate the correction factor fage to put 100,000+ field giants from TESS, Kepler, K2, Roman, and Plato on the cluster age scale and answer questions about the Milky Way’s Evolution