Unstable standard candles. Periodic light curve modulation in fundamental mode classical Cepheids
arXiv:1703.05358 · doi:10.1093/mnras/stx679
Abstract
We report the discovery of periodic modulation of pulsation in 51 fundamental mode classical Cepheids of the Magellanic Clouds observed by the Optical Gravitational Lensing Experiment. Although the overall incidence rate is very low, about 1 per cent in each of the Magellanic Clouds, in the case of the SMC and pulsation periods between 12 and 16d the incidence rate is nearly 40 per cent. On the other hand, in the LMC the highest incidence rate is 5 per cent for pulsation periods between 8 and 14d, and the overall amplitude of the effect is smaller. It indicates that the phenomenon is metallicity dependent. Typical modulation periods are between 70 and 300d. In nearly all stars the mean brightness is modulated, which, in principle, may influence the use of classical Cepheids for distance determination. Fortunately, the modulation of mean brightness does not exceed 0.01 mag in all but one star. Also, the effect averages out in typical observations spanning a long time base. Consequently, the effect of modulation on the determination of the distance moduli is negligible. The relative modulation amplitude of the fundamental mode is also low and, with one exception, it does not exceed 6 per cent. The origin of the modulation is unknown. We draw a hypothesis that the modulation is caused by the 2:1 resonance between the fundamental mode and the second overtone that shapes the famous Hertzsprung bump progression.
13 pages, 14 figures, accepted for publication in MNRAS
References in corpus (11)
- Frequency analysis of Cepheids in the Large Magellanic Cloud. New types of classical Cepheid pulsators
- Long time-scale behavior of the Blazhko effect from rectified Kepler data
- Tuning in on Cepheids: Radial velocity amplitude modulations. A source of systematic uncertainty for Baade-Wesselink distances
- Observations of Cepheids with the MOST satellite: Contrast between Pulsation Modes
- Discovery of Cycle-to-cycle Modulated Spectral Line Variability and Velocity Gradients in Long-period Cepheids
- The Kepler Cepheid V1154 Cyg revisited: light curve modulation and detection of granulation
- Blazhko-type modulation in the double-mode RR Lyrae stars of the OGLE Galactic bulge collection
- Period doubling and Blazhko modulation in BL Herculis hydrodynamic models
- V473 Lyrae, a unique second-overtone Cepheid with two modulation cycles
- BRITE observations of classical Cepheids
- Cepheids with the eyes of photometric space telescopes
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