Accretion variability from minutes to decade timescales in the classical T Tauri star CR Cha
arXiv:2201.03396 · doi:10.1051/0004-6361/202142203
Abstract
Classical T Tauri stars are surrounded by a circumstellar disk from which they are accreting material. This process is essential in the formation of Sun-like stars. Although often described with simple and static models, the accretion process is inherently time variable. Our aim is to examine the accretion process of the low-mass young stellar object CR Cha on a wide range of timescales from minutes to a decade by analyzing both photometric and spectroscopic observations from 2006, 2018, and 2019. We carried out period analysis on the light curves of CR Cha from the TESS mission and the ASAS-SN and the ASAS-3 databases. We studied the color variations of the system using -band photometry obtained contemporaneously with the TESS observing window. We analyzed the amplitude, timescale, and the morphology of the accretion tracers found in a series of high-resolution spectra obtained in 2006 with the AAT/UCLES, in 2018 with the HARPS, and in 2019 with the ESPRESSO and the FEROS spectrographs. All photometric data reveal periodic variations compatible with a 2.327 days rotational period, which is stable in the system over decades. Moreover, the ASAS-SN and ASAS-3 data hint at a long-term brightening by 0.2 mag, between 2001 and 2008, and of slightly less than 0.1 mag in the 2015 - 2018 period. The near-infrared color variations can be explained by either changing accretion rate or changes in the inner disk structure. Our results show that the amplitude of the variations in the H emission increases on timescales from hours to days/weeks, after which it stays similar even when looking at decadal timescales. On the other hand, we found significant morphological variations on yearly/decadal timescales, indicating that the different physical mechanisms responsible for the line profile changes, such as accretion or wind, are present to varying degrees at different times.
Accepted for publication in Astronomy & Astrophysics. 15 pages, 15 figures
References in corpus (18)
- The Transiting Exoplanet Survey Satellite
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- The All-Sky Automated Survey for Supernovae (ASAS-SN) Light Curve Server v1.0
- Empirical Color Transformations Between SDSS Photometry and Other Photometric Systems
- X-Shooter spectroscopy of young stellar objects in Lupus: Accretion properties of class II and transitional objects
- Large-scale magnetic topologies of early M dwarfs
- CERES: A Set of Automated Routines for Echelle Spectra
- Mapping accretion and its variability in the young open cluster NGC 2264: a study based on u-band photometry
- Temperaments of young stars: Rapid mass-accretion rate changes in T Tauri and Herbig Ae stars
- On the magnetic topology of partially and fully convective stars
- Modelling the magnetic activity & filtering radial velocity curves of young Suns: the weak-line T Tauri star LkCa 4
- The non-dipolar magnetic fields of accreting T Tauri stars
- Constraining disk evolution prescriptions of planet population synthesis models with observed disk masses and accretion rates
- TESS observations of Cepheid stars: first light results
- Synthetic Light Curves of Accretion Variability in T Tauri Stars
- The detection of dust gap-ring structure in the outer region of the CR Cha protoplanetary disk
- Dipper-like variability of the Gaia alerted young star V555 Ori
- Near-infrared time-series photometry in the field of Cygnus OB2 association II. Mapping the variability of candidate members
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