Doppler imaging combined with high-cadence photometry. I. Revisiting the surface of a pre-main-sequence flare star
arXiv:2511.12190 · doi:10.1051/0004-6361/202556616
Abstract
Latitude distribution of stellar magnetic activity is not well constrained by observations, despite its importance for a better understanding of stellar dynamos. We aim to obtain an accurate reconstruction of the surface spot distribution on the young, rapidly rotating K2 star PW And by combining spectroscopic and photometric diagnostics. In particular, we seek to assess how the inclusion of continuous high-precision TESS photometry in parallel with high-resolution spectroscopy improves latitude recovery of starspots, especially at low latitudes and in the southern hemisphere, which are poorly constrained by Doppler imaging (DI) alone. We explore the spatial origins of the observed white-light flares. We performed simultaneous Doppler imaging and light curve inversion (DI+LCI) using contemporaneous high-resolution GAOES-RV spectra from the 3.8 m Seimei telescope (R~65000) and high-precision TESS light curves. Surface reconstructions employ the SpotDIPy code to model both line profiles and continuum brightness variations. We compare DI+LCI maps with DI-only solutions, conduct artificial-spot simulations to evaluate the effects of latitude, phase coverage, and S/N on reconstruction reliability. We also investigate the spatial correlation between the DI+LCI reconstructed map and flares detected in the TESS data. The DI+LCI reconstruction reveals significant spot features at mid-to-low latitudes, equatorial regions, and even in the southern hemisphere. Simulations show that DI+LCI provides more accurate reconstructions than DI-only, especially under conditions of incomplete phase coverage and low S/N, by better recovering both spot latitudes and filling factors. A comparison between the DI+LCI map and the TESS flare timings also suggests potential association between flare occurrence and reconstructed spot longitudes.
18 pages, 14 figures, Accepted for publication to A&A
References in corpus (23)
- The Transiting Exoplanet Survey Satellite
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Kepler Flares I. Active and Inactive M dwarfs
- Patterns of photometric and chromospheric variation among Sun-like stars: A 20-year perspective
- Do Kepler superflare stars really include slowly-rotating Sun-like stars ? - Results using APO 3.5m telescope spectroscopic observations and Gaia-DR2 data -
- Flares in Open Clusters with K2. II. Pleiades, Hyades, Praesepe, Ruprecht 147, and M67
- ExoTiC-LD: thirty seconds to stellar limb-darkening coefficients
- Giant white-light flares on fully convective stars occur at high latitudes
- Starspot mapping with adaptive parallel tempering. II. Application to TESS data for M-dwarf flare stars, AU Microscopii, YZ Canis Minoris, and EV Lacertae
- High Dispersion Spectroscopy of Solar-type Superflare Stars. I. Temperature, Surface Gravity, Metallicity, and
- Temporal Evolution of Spatially-Resolved Individual Star Spots on a Planet-Hosting Solar-type Star: Kepler 17
- Searching for flaring star-planet interactions in AU Mic TESS observations
- Spectral variability of photospheric radiation due to faculae II: Facular contrasts for cool main-sequence stars
- The T Tauri star V410 Tau in the eyes of SPIRou and TESS
- Starspot mapping with adaptive parallel tempering I: Implementation of computational code
- Observing and modelling the young solar analogue EK Draconis: starspot distribution, elemental abundances, and evolutionary status
- Faculae cancel out on the surfaces of active Suns
- The active weak-line T Tauri star LkCa 4 observed with SPIRou and TESS
- Magnetic activity of the young solar analogue V1358 Ori
- Low-latitude magnetic flux emergence on rapidly rotating solar-type stars
- Flaring Activities of Fast Rotating Stars have Solar-like Latitudinal Distribution
- Magnetic activity variability from H line intensive monitoring for two F-type stars having a hot-Jupiter, Bootis A and Andromedae A
- 3D Radiative MHD Simulations of Starspots II: Large-scale Structure