Photospheric and chromospheric activity on the young solar-type star HD 171488
A. Frasca(1), K. Biazzo(1,2), Zs. Kovari(3), E. Marilli(1), O., Cakirli(4,5) ((1) INAF - Osservatorio Astrofisico di Catania, (2) INAF -, Osservatorio Astrofisico di Arcetri, (3) Konkoly Observatory, (4) Ege, University, (5) TUBITAK National Observatory)

TL;DR
This study combines spectroscopic and photometric data to analyze surface inhomogeneities on the young star HD 171488, revealing large high-latitude spots and plages with solar-like properties but larger sizes and higher latitudes.
Contribution
It provides a detailed model of surface activity on HD 171488, including spot and plage distributions, using combined spectroscopic, photometric, and Doppler imaging techniques.
Findings
Surface inhomogeneities are modeled with two high-latitude spots.
Chromospheric plages lead spots by 20-40 degrees in longitude.
Active regions resemble solar features but are larger and at higher latitudes.
Abstract
We present the results of contemporaneous spectroscopic and photometric monitoring of the young solar-type star HD171488 (Prot~1.337 d) aimed at studying surface inhomogeneities at photospheric/chromospheric levels. Echelle FOCES spectra (R~40000) and Johnson photometry have been performed in 2006. Spectral type, rotational velocity, metallicity, and gravity were determined using a code developed by us. The metallicity was measured from the analysis of iron lines. The spectral subtraction technique was applied to the most relevant chromospheric diagnostics included in the FOCES spectral range (CaII IRT, Halpha, HeI-D3, Hbeta, CaII H&K). A model with two large high-latitude spots is sufficient to reproduce the B/V light curves and the radial velocity modulation, if a temperature difference between photosphere and spots of 1500 K is used. A Doppler imaging analysis of photospheric lines…
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