Pulsation tomography of rapidly oscillating Ap stars. Resolving the third dimension in peculiar pulsating stellar atmospheres
T. Ryabchikova, M. Sachkov, O. Kochukhov, D. Lyashko

TL;DR
This study uses spectroscopic time-series data to map the vertical structure of pulsations in ten roAp stars, revealing common features in wave behavior and chemical stratification across different stellar atmospheres.
Contribution
It provides the first detailed vertical pulsation mode cross-section analysis for multiple roAp stars, enhancing understanding of wave propagation and atmospheric stratification.
Findings
Pulsation amplitude varies with depth, peaking at certain layers.
Maximum RV of second REE ions is delayed relative to first ions.
Pulsation waves combine standing and running wave components.
Abstract
We present detailed analysis of the vertical pulsation mode cross-section in ten rapidly oscillating Ap (roAp) stars based on spectroscopic time-series observations. The aim of this analysis is to derive from observations a complete picture of how the amplitude and phase of magnetoacoustic waves depend on depth. We find common features in the pulsational behaviour of roAp stars. Within a sample of representative elements the lowest amplitudes are detected for Eu II (and Fe in 33 Lib and in HD 19918), then pulsations go through the layers where Halpha core, Nd, and Pr lines are formed. There RV amplitude reaches its maximum, and after that decreases in most stars. The maximum RV of the second REE ions is always delayed relative to the first ions. The largest phase shifts are detected in Tb III and Th III lines. Pulsational variability of the Th III lines is detected here for the first…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astro and Planetary Science · High-pressure geophysics and materials
