Extended envelopes around Galactic Cepheids. V. Multi-wavelength and time-dependent analysis of IR excess
A. Gallenne, A. M\'erand, P. Kervella, G. Pietrzy\'nski, W. Gieren, V., Hocd\'e, L. Breuval, N. Nardetto, and E. Lagadec

TL;DR
This study investigates the infrared excess around 45 Galactic Cepheids using multi-wavelength data and the SPIPS algorithm, finding that about 29% exhibit IR excess likely due to circumstellar envelopes, with no correlation to pulsation period or evolution stage.
Contribution
It provides a comprehensive multi-wavelength analysis of IR excess in Cepheids, demonstrating the prevalence of CSEs and their impact on distance measurements, challenging previous assumptions about period dependence.
Findings
29% of Cepheids show IR excess likely from CSEs
No correlation between IR excess and pulsation period
IR excess does not bias distance estimates
Abstract
We aim to investigate the IR excess of 45 MW Cepheids combining different observables to constrain the presence of CSE. We used the SPIPS algorithm, a robust implementation of the parallax-of-pulsation method that combines photometry, angular diameter, stellar effective temperature, and RV measurements in a global modelling of the pulsation. We obtained new photometric measurements at mid-IR with the VLT/VISIR complemented with literature data. We then compared the mean magnitude from 0.5m to 70m with stellar atmosphere models to infer the IR excess, which we attribute to the presence of a CSE. We report that at least 29% of our sample have a detected IR excess. We estimated a mean excess of 0.08mag in K and 0.13mag in N. Other Cepheids possibly have IR excess, but they were rejected due to their low detection level compared to a single-star model. We do not see any…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astrophysics and Star Formation Studies · Astronomy and Astrophysical Research
