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3D hydrodynamic simulations of massive main-sequence stars II. Convective excitation and spectra of internal gravity waves

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arxiv 2303.06125 v4 pith:H54FXU6K submitted 2023-03-10 astro-ph.SR

classification astro-ph.SR
keywords powerobservationsconvectivecoreconvectionfrequencyhydrodynamicsimulations
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abstract

Recent photometric observations of massive stars have identified a low-frequency power excess which appears as stochastic low-frequency variability in light curve observations. We present the oscillation properties of high resolution hydrodynamic simulations of a 25 $\mathrm{M}_\odot$ star performed with the PPMStar code. The model star has a convective core mass of $\approx\, 12\, \mathrm{M}_\odot$ and approximately half of the envelope simulated. From this simulation, we extract light curves from several directions, average them over each hemisphere, and process them as if they were real photometric observations. We show how core convection excites waves with a similar frequency as the convective time scale in addition to significant power across a forest of low and high angular degree $l$ modes. We find that the coherence of these modes is relatively low as a result of their stochastic excitation by core convection, with lifetimes on the order of 10s of days. Thanks to the still significant power at higher $l$ and this relatively low coherence, we find that integrating over a hemisphere produces a power spectrum that still contains measurable power up to the Brunt--V\"ais\"al\"a frequency. These power spectra extracted from the stable envelope are qualitatively similar to observations, with same order of magnitude yet lower characteristic frequency. This work further shows the potential of long-duration, high-resolution hydrodynamic simulations for connecting asteroseismic observations to the structure and dynamics of core convection and the convective boundary.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Gravity modes and potential evidence for Rossby Waves in late O-type supergiants

    astro-ph.SR 2026-08 conditional novelty 6.0 of 10

    Three O-type supergiants observed by TESS show low-frequency periodicities and near-constant frequency spacings, which the authors interpret as rotationally split gravity modes and possible Rossby waves.

  2. The symphony of pulsations and binarity among massive stars using HERMES spectroscopy and TESS photometry

    astro-ph.SR 2026-08 conditional novelty 6.0 of 10

    An ensemble analysis of 873 O/B stars shows photometric variability in >93%, pulsations in ~82%, and evidence of binarity in at least 14%, including 30 newly discovered eclipsing binaries.

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