Predicted properties of Galactic and Magellanic Classical Cepheids in the SDSS filters
arXiv:1209.4090 · doi:10.1093/mnras/sts023
Abstract
We present the first extensive and detailed theoretical scenario for the interpretation of Cepheid properties observed in the SDSS filters. Three sets of nonlinear convective pulsation models, corresponding to the chemical compositions of Cepheids in the Milky Way, the Large Magellanic Cloud and the Small Magellanic Cloud respectively, are transformed into the SDSS bands by relying on updated model atmospheres. The resulting observables, namely the instability strip boundaries and the light curves, as well as the Period-Luminosity, the Wesenheit and the Period-Luminosity-Colour relations, are discussed as a function of the metal content, for both the fundamental and the first overtone mode. The fundamental PL relations are found to deviate from linear relations when computed over the whole observed Cepheid period range, especially at the shorter wavelenghts, confirming previous findings in the Johnson-Cousins bands. The obtained slopes are found to be mildly steeper than the ones of the semiempirical and the empirical relations available in the literature and covering roughly the same period range, with the discrepancy ranging from about 13% in u-band to about 3% in z.
Accepted for publication in MNRAS
References in corpus (2)
Cited by in corpus (9)
- A re-classification of Cepheids in the Gaia Data Release 2
- On the distance of the Magellanic Clouds using Cepheid NIR and optical-NIR Period Wesenheit Relations
- Cepheid Metallicity in the Leavitt Law (C-MetaLL) survey: I. HARPS-N@TNG spectroscopy of 47 Classical Cepheid and 1 BL Her variables
- On the Period--Luminosity--Metallicity relation of Classical Cepheids
- Cepheids in M31 - The PAndromeda Cepheid sample
- Cepheid Variables in the Maser-Host Galaxy NGC 4258
- Period-Luminosity Relations for Galactic classical Cepheids in the Sloan bands
- M33 Cepheids from CFHT/MegaCAM survey
- New Blue and Red Variable Stars in NGC 247