Kepler photometry of RRc stars: peculiar double-mode pulsations and period doubling
P. Moskalik, R. Smolec, K. Kolenberg, L. Moln\'ar, D. W. Kurtz, R., Szab\'o, J. M. Benk\H{o}, J. M. Nemec, M. Chadid, E. Guggenberger, C.-C., Ngeow, Y.-B. Jeon, G. Kopacki, S. M. Kanbur

TL;DR
This study analyzes Kepler data of four RRc stars, revealing a new class of multimode pulsators with nonradial modes, period doubling, and variable amplitudes, indicating complex pulsation behaviors not previously observed.
Contribution
It identifies a new class of multimode RR Lyrae stars with nonradial modes and period doubling, expanding understanding of stellar pulsation phenomena.
Findings
Discovery of nonradial secondary modes with period ratios 0.612-0.632.
First detection of period doubling in RRc stars.
Observation of nonradial g-modes in RR Lyrae variables.
Abstract
We present the analysis of four first overtone RR Lyrae stars observed with the Kepler space telescope, based on data obtained over nearly 2.5yr. All four stars are found to be multiperiodic. The strongest secondary mode with frequency f_2 has an amplitude of a few mmag, 20 - 45 times lower than the main radial mode with frequency f_1. The two oscillations have a period ratio of P_2/P_1 = 0.612 - 0.632 that cannot be reproduced by any two radial modes. Thus, the secondary mode is nonradial. Modes yielding similar period ratios have also recently been discovered in other variables of the RRc and RRd types. These objects form a homogenous group and constitute a new class of multimode RR Lyrae pulsators, analogous to a similar class of multimode classical Cepheids in the Magellanic Clouds. Because a secondary mode with P_2/P_1 ~ 0.61 is found in almost every RRc and RRd star observed from…
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