Solar-like Oscillations in Accreting Pre-main-sequence Stars: Insights and Prospects

Autor(en)
Johannes Jørgensen, Konstanze Zwintz, Ebraheem Farag, Eduard I. Vorobyov, Thomas Steindl
Abstrakt

We present theoretical predictions for solar-like oscillators in the pre-main-sequence (pre-MS) phase of stellar evolution. Our pre-MS models start from a stellar seed of 0.01 solar masses that gains mass through accretion, offering an alternative description to the classical approach segmented into the Hayashi and Henyey tracks. Evolutionary models are calculated using the MESA stellar evolution code with a custom accretion routine, and pulsation properties are investigated using the GYRE oscillation code. We present evolutionary tracks and internal structures for accreting pre-MS solar-like stars in a mass range from 0.7 to 1.6 solar masses, adopting 35 mass accretion histories previously extracted from two-dimensional magneto-hydrodynamical simulations. Atmospheric parameters of our models constrain characteristic frequencies of pre-MS solar-like oscillators to be generally greater than 500 μHz. We highlight the imprint of accretion on the buoyancy and Lamb profiles, and illustrate the effects on the small- and large-frequency separations. We additionally quantify individual frequency differences across the 35 accretion histories at the zero-age MS, showcasing differences no larger than 20 μHz for an exemplary model. Finally, we discuss the potential of detecting solar-like oscillations in pre-MS stars with the upcoming ESA PLATO mission.

Organisation(en)
Institut für Astrophysik
Externe Organisation(en)
Leopold-Franzens-Universität Innsbruck, Yale University
Journal
The Astrophysical Journal
Band
995
Anzahl der Seiten
16
ISSN
0004-637X
DOI
https://doi.org/10.3847/1538-4357/ae1a78
Publikationsdatum
12-2025
Peer-reviewed
Ja
ÖFOS 2012
103003 Astronomie, 103004 Astrophysik
Link zum Portal
https://ucrisportal.univie.ac.at/de/publications/27d3b0b6-373d-4231-8018-bfd5086d54b0