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Fig. 1. Data for double-mode (F+1O) Cepheids from the LMC with the fit. Other fundamentalization relations are shown for comparison.

Fundamentalization of 1O and 2O Cepheid periods

Relevant publication:

Fundamentalization of periods for first and second-overtone classical Cepheids

Pilecki B.

2024, ApJL, 970, L14 (← click to see the publication at ADS/arXiv)

Almost half of all classical Cepheids do not pulsate in fundamental mode, and nowadays, the fundamentalization of their higher-mode periods is frequently applied to increase the sample size in astrophysical investigations and allow for comparison with fundamental-mode Cepheids. On the other hand, the relations used to obtain fundamentalized periods are either old or based on small samples that cover narrow period ranges. We used available data of 989 Cepheids pulsating in at least two modes to obtain modern, high-quality empirical fundamentalization relations applicable in a wide range of periods of first- and second-overtone Cepheids for metallicities typical for the Milky Way and Magellanic Clouds. A clear correlation between the features of these relations and metallicity is seen, and periods with lower sensitivity to metallicity are identified. We also compare our results with double-mode Cepheids from the M31 and M33 galaxies. For the first galaxy, this indicates Cepheids have metallicities from supersolar to typical for the LMC, while for the latter, from solar to typical for the SMC. A general discussion of the usage of a different type of fundamentalization relations depending on the scientific problem is included.

Formulas for fundamentalization of first-overtone periods:

(MW) PF/P1O = 1.371 + 0.106 log P1O
(LMC) PF/P1O = 1.367 + 0.079 log P1O
(SMC) PF/P1O = 1.356 + 0.068 log P1O

Formulas for fundamentalization of second-overtone periods:

(MW) PF/P2O = 1.723 + 0.171 log P2O + 0.081(log P2O)^2
(LMC) PF/P2O = 1.713 + 0.144 log P2O + 0.062(log P2O)^2
(SMC) PF/P2O = 1.702 + 0.152 log P2O + 0.068(log P2O)^2

Formulas for conversion of 2O to 1O periods:

(MW) P1O/P2O = 1.247 + 0.028 log P2O + 0.059(log P2O)^2
(LMC) P1O/P2O = 1.247 + 0.032 log P2O + 0.044(log P2O)^2
(SMC) P1O/P2O = 1.249 + 0.048 log P2O + 0.048(log P2O)^2