Asteroseismic inference of subgiant evolutionary parameters with deep learning

Abstract:

With the observations of an unprecedented number of oscillating subgiant stars expected from NASA's TESS mission, the asteroseismic characterization of subgiant stars will be a vital task for stellar population studies and for testing our theories of stellar evolution. To determine the fundamental properties of a large sample of subgiant stars efficiently, we developed a deep learning method that estimates distributions of fundamental parameters like age and mass over a wide range of input physics by learning from a grid of stellar models varied in eight physical parameters. We applied our method to four Kepler subgiant stars and compare our results with previously determined estimates. Our results show good agreement with previous estimates for three of them (KIC 11026764, KIC 10920273, KIC 11395018). With the ability to explore a vast range of stellar parameters, we determine that the remaining star, KIC 10005473, is likely to have an age 1 Gyr younger than its previously determined estimate. Our method also estimates the efficiency of overshooting, undershooting, and microscopic diffusion processes, from which we determined that the parameters governing such processes are generally poorly constrained in subgiant models. We further demonstrate our method's utility for ensemble asteroseismology by characterizing a sample of 30 Kepler subgiant stars, where we find a majority of our age, mass, and radius estimates agree within uncertainties from more computationally expensive grid-based modelling techniques.

SEEK ID: https://publications.h-its.org/publications/1154

DOI: 10.1093/mnras/staa2853

Research Groups: Theory and Observations of Stars

Publication type: Journal

Journal: Monthly Notices of the Royal Astronomical Society

Citation: Monthly Notices of the Royal Astronomical Society 499(2):2445-2461

Date Published: 1st Dec 2020

Registered Mode: by DOI

Authors: Marc Hon, Earl P Bellinger, Saskia Hekker, Dennis Stello, James S Kuszlewicz

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Citation
Hon, M., Bellinger, E. P., Hekker, S., Stello, D., & Kuszlewicz, J. S. (2020). Asteroseismic inference of subgiant evolutionary parameters with deep learning. In Monthly Notices of the Royal Astronomical Society (Vol. 499, Issue 2, pp. 2445–2461). Oxford University Press (OUP). https://doi.org/10.1093/mnras/staa2853
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Created: 10th Nov 2020 at 10:43

Last updated: 5th Mar 2024 at 21:24

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