Regular frequency patterns in the classical delta Scuti star HD 144277 observed by the MOST satellite
K. Zwintz, P. Lenz, M. Breger, A. A. Pamyatnykh, T. Zdravkov, R., Kuschnig, J. M. Matthews, D. B. Guenther, A. F. J. Moffat, J. F. Rowe, S. M., Rucinski, D. Sasselov, W. W. Weiss

TL;DR
This study analyzes high-precision photometry of the delta Scuti star HD 144277, revealing regular frequency patterns and identifying pulsation modes, contributing to understanding of stellar oscillations in high-frequency delta Scuti stars.
Contribution
It presents the first detailed asteroseismic analysis of HD 144277, identifying its pulsation modes and frequency spacings, and constraining its stellar parameters.
Findings
Identified 12 independent pulsation frequencies in four groups.
Discovered a regular frequency spacing of 3.6 c/d, indicating radial and dipole mode relationships.
Modeling suggests HD 144277 is a near-ZAMS star with 1.66 solar masses.
Abstract
We present high-precision time-series photometry of the classical delta Scuti star HD 144277 obtained with the MOST (Microvariability and Oscillations of STars) satellite in two consecutive years. The observed regular frequency patterns are investigated asteroseismologically. HD 144277 is a hot A-type star that is located on the blue border of the classical instability strip. While we mostly observe low radial order modes in classical delta Scuti stars, HD 144277 presents a different case. Its high observed frequencies, i.e., between 59.9c/d (693.9 microHz) and 71.1c/d (822.8microHz), suggest higher radial orders. We examine the progression of the regular frequency spacings from the low radial order to the asymptotic frequency region. Frequency analysis was performed using Period04 and SigSpec. The results from the MOST observing runs in 2009 and 2010 were compared to each other. The…
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