Unveiling the Variability and Chemical Composition of AL Col

Abstract

Using \ short-cadence (120\,s) SAP flux, we identified a rotational frequency of 0.09655\,d-1 (Prot=10.35733\,d). Wavelet analysis reveals that while the amplitudes of the harmonic components vary over time, the strength of the primary rotational frequency remains stable. A SED analysis of multi-band photometric data yields an effective temperature (Teff) of 11,750\,K. %MDPI: Comma added for five digits in the whole text, please check. High-resolution spectroscopic observations covering wavelengthrange 4500--7000\,\ provide refined estimates of \, =\, 13,814\, \, 400\,K, \,=\, 4.09\, \, 0.08\,dex, and \, =\, 16 1\,. Abundance analysis shows solar-like composition of O\,ii, Mg\,ii, S\,ii, and Ca\,ii, while helium is under-abundant by 0.62\,dex. Rare earth elements (REEs) exhibit over-abundances of up to 5.2\,dex, classifying the star as an Ap/Bp-type star. AL\,Col has a radius of R = 3.74\,\,0.48 R, with its H--R diagram position estimating a mass of M = 4.2\,\,0.2 M and an age of 0.12\,\,0.01 Gyr, indicating that the star has slightly evolved from the main sequence. The \ light curves were modeled using a three-evolving-spot configuration, suggesting the presence of differential rotation. This star is a promising candidate for future investigations of magnetic field diagnostics and the vertical stratification of chemical elements in its atmosphere.

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