The effect of metallicity on Cepheid Period-Luminosity relations from a Baade-Wesselink analysis of Cepheids in the Milky Way and Magellanic Clouds
W. Gieren, J. Storm, P. Konorski, M. G\'orski, B. Pilecki, I., Thompson, G. Pietrzy\'nski, D. Graczyk, T.G. Barnes, P. Fouqu\'e, N., Nardetto, A. Gallenne, P. Karczmarek, K. Suchomska, P. Wielg\'orski, M., Taormina, B. Zgirski

TL;DR
This study investigates how metallicity influences the Cepheid period-luminosity relation by comparing Cepheids in the Milky Way, LMC, and SMC using Baade-Wesselink analysis, revealing a systematic metallicity effect on their brightness.
Contribution
It provides the first differential analysis of the absolute PL relations across three galaxies with different metallicities using an enhanced SMC Cepheid sample.
Findings
SMC Cepheids are intrinsically fainter than LMC and MW counterparts.
Metallicity effect in the K band is -0.23 mag/dex.
Zero point-metallicity relation may be nonlinear at low metallicities.
Abstract
The extragalactic distance scale builds on the Cepheid period-luminosity (PL) relation. In this paper, we want to carry out a strictly differential comparison of the absolute PL relations obeyed by classical Cepheids in the Milky Way (MW), LMC and SMC galaxies. Taking advantage of the substantial metallicity difference among the Cepheid populations in these three galaxies, we want to establish a possible systematic trend of the PL relation absolute zero point as a function of metallicity, and determine the size of such an effect in optical and near-infrared photometric bands. We are using the IRSB Baade-Wesselink type method as calibrated by Storm et al. to determine individual distances to the Cepheids in our samples in MW, LMC and SMC. For our analysis, we use a greatly enhanced sample of Cepheids in the SMC (31 stars) as compared to the small sample (5 stars) available in our…
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