In this paper we report on new RR Lyrae stars discovered in the first long run fields (LRc01 and LRa01) of the CoRoT mission. CoRoT frequency analysis of the high quality light curve with an unprecedented photometric accuracy and uninterrupted coverage over long period (∼150 days) are shown. The CoRoT results reveal four of the seven stars affected with the Blazhko effect and showing a very high fraction of the Blazhko stars ever obtained. The CoRoT RRLyrae stars show pulsation periods strongly nonlinear and complex multiplet structures, such as the triplet, quintuplet, septuplet, nonuplet, undecaplet, tredecaplet, quindecaplet and sepdecaplet frequency structures. Additional frequencies are detected as well with a linear combination with the fundamental radial mode, showing a strong evidence for direct detections of nonradial pulsations. We put into evidence new classes of RR Lyrae stars showing the Blazhko double mode RR Lyrae stars (fundamental and second overtone), nonradial and radial (multimodes) pulsations and new behaviour of the Blazhko effect, such as the Blazhko modulation in both mixing modes (second Blazhko effect), the CoRoT Blazhko results are consistent with Stothers’explanation of the Blazhko effect with period and amplitude changes. However, we stress for developing it in further theoretical investigation, with the aim of finding the physical mechanism behind the Blazhko enigma.
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16 September 2009
STELLAR PULSATION: CHALLENGES FOR THEORY AND OBSERVATION: Proceedings of the International Conference
31 May–5 June 2009
Santa Fe, New Mexico (USA)
Research Article|
September 16 2009
First RR Lyrae Light Curve from CoRoT Big Challenge and Constraint to the Theoretical Models
M. Chadid;
M. Chadid
aObserv. de la Côte d’Azur, Université Nice Sophia‐Antipolis, UMR 6525, Parc Valrose, 06108 Nice, France
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A. Baglin;
A. Baglin
bLESIA, Université Pierre et Marie Curie, Observatoire de Paris, 92195 Meudon Cedex, France
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J. Benko;
J. Benko
cKonkoly Observatory of the Hungarian Academy of Sciences, PO Box 67, H‐1525 Budapest, Hungary
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G. Bono;
G. Bono
dINAF, Rome Astronomical Observatory, Via Frascati 33, 00040 Monte Porzio Catone, Italy
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E. Chapellier;
E. Chapellier
eObserv. de la Côte d’Azur, Universite’ Nice Sophia‐Antipolis, UMR 6525, Parc Valrose, 06108 Nice, France
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E. Guggenberger;
E. Guggenberger
fInstitute of Astronomy, University of Vienna, Turkenschanzstrasse 17, A‐1180 Vienna, Austria
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K. Kolenberg;
K. Kolenberg
fInstitute of Astronomy, University of Vienna, Turkenschanzstrasse 17, A‐1180 Vienna, Austria
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M. Paparo;
M. Paparo
cKonkoly Observatory of the Hungarian Academy of Sciences, PO Box 67, H‐1525 Budapest, Hungary
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E. Poretti;
E. Poretti
gInstituto Nazionale di Astrofisica, Osservatorio Astronomico di Brera, Italy
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R. Szabo;
R. Szabo
cKonkoly Observatory of the Hungarian Academy of Sciences, PO Box 67, H‐1525 Budapest, Hungary
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H. Trinquet;
H. Trinquet
eObserv. de la Côte d’Azur, Universite’ Nice Sophia‐Antipolis, UMR 6525, Parc Valrose, 06108 Nice, France
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W. W. Weiss
W. W. Weiss
fInstitute of Astronomy, University of Vienna, Turkenschanzstrasse 17, A‐1180 Vienna, Austria
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AIP Conf. Proc. 1170, 235–239 (2009)
Citation
M. Chadid, A. Baglin, J. Benko, G. Bono, E. Chapellier, E. Guggenberger, K. Kolenberg, M. Paparo, E. Poretti, R. Szabo, H. Trinquet, W. W. Weiss; First RR Lyrae Light Curve from CoRoT Big Challenge and Constraint to the Theoretical Models. AIP Conf. Proc. 16 September 2009; 1170 (1): 235–239. https://doi.org/10.1063/1.3246451
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