Unstable accretion in TW Hya: 3D simulations and comparisons with observations

Fuente: arXiv
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Main Authors: Romanova, M. M., Espaillat, C. C., Wendeborn, J., Donati, J. -F., Petrov, P. P., Lovelace, R. V. E.
Format: Preprint
Published: 2025
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author Romanova, M. M.
Espaillat, C. C.
Wendeborn, J.
Donati, J. -F.
Petrov, P. P.
Lovelace, R. V. E.
author_facet Romanova, M. M.
Espaillat, C. C.
Wendeborn, J.
Donati, J. -F.
Petrov, P. P.
Lovelace, R. V. E.
contents We investigate the origin of photometric variability in the classical T Tauri star TW Hya by comparing light curves obtained by TESS and ground-based telescopes with light curves created using three-dimensional (3D) magnetohydrodynamic (MHD) simulations. TW Hya is modeled as a rotating star with a dipole magnetic moment, slightly tilted about the rotational axis. We observed that for various model parameters, matter accretes in the unstable regime and produces multiple hot spots on the star's surface, which leads to stochastic-looking light curves similar to the observed ones. Wavelet and Fourier spectra of observed and modeled light curves show multiple quasiperiodic oscillations (QPOs) with quasiperiods from less than 0.1 to 9 days. Models show that variation in the strength and tilt of the dipole magnetosphere leads to different periodograms, where the period of the star may dominate or be hidden. The amplitude of QPOs associated with the stellar period can be smaller than that of other QPOs if the tilt of the dipole magnetosphere is small and when the unstable regime is stronger. In models with small magnetospheres, the short-period QPOs associated with rotation of the inner disc dominate and can be mistaken for a stellar period. We show that longer-period (5-9 days) QPOs can be caused by waves forming beyond the corotation radius.
format Preprint
id arxiv_https___arxiv_org_abs_2501_13294
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Unstable accretion in TW Hya: 3D simulations and comparisons with observations
Romanova, M. M.
Espaillat, C. C.
Wendeborn, J.
Donati, J. -F.
Petrov, P. P.
Lovelace, R. V. E.
Solar and Stellar Astrophysics
We investigate the origin of photometric variability in the classical T Tauri star TW Hya by comparing light curves obtained by TESS and ground-based telescopes with light curves created using three-dimensional (3D) magnetohydrodynamic (MHD) simulations. TW Hya is modeled as a rotating star with a dipole magnetic moment, slightly tilted about the rotational axis. We observed that for various model parameters, matter accretes in the unstable regime and produces multiple hot spots on the star's surface, which leads to stochastic-looking light curves similar to the observed ones. Wavelet and Fourier spectra of observed and modeled light curves show multiple quasiperiodic oscillations (QPOs) with quasiperiods from less than 0.1 to 9 days. Models show that variation in the strength and tilt of the dipole magnetosphere leads to different periodograms, where the period of the star may dominate or be hidden. The amplitude of QPOs associated with the stellar period can be smaller than that of other QPOs if the tilt of the dipole magnetosphere is small and when the unstable regime is stronger. In models with small magnetospheres, the short-period QPOs associated with rotation of the inner disc dominate and can be mistaken for a stellar period. We show that longer-period (5-9 days) QPOs can be caused by waves forming beyond the corotation radius.
title Unstable accretion in TW Hya: 3D simulations and comparisons with observations
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2501.13294