Cepheid distances from infrared long-baseline interferometry - I. VINCI/VLTI observations of seven Galactic Cepheids
P. Kervella, N. Nardetto, D. Bersier, D. Mourard, V. Coude du Foresto

TL;DR
This study measures the angular diameters of seven Galactic Cepheids using infrared interferometry, detects pulsational variations, and derives their distances through direct and hybrid methods, refining the cosmic distance scale.
Contribution
First direct measurement of Cepheid angular diameters with interferometry and improved distance estimates using a combination of methods.
Findings
Detected pulsational angular diameter variations in four Cepheids.
Derived distances with statistical and systematic uncertainties.
Provided updated Cepheid distances to calibrate cosmic distance measurements.
Abstract
We report the angular diameter measurements of seven classical Cepheids (X Sgr, eta Aql, W Sgr, zeta Gem, beta Dor, Y Oph and L Car) that we have obtained with the VINCI instrument, installed at ESO's VLT Interferometer (VLTI). We also present reprocessed archive data obtained with the FLUOR/IOTA instrument on zeta Gem, in order to improve the phase coverage of our observations. We obtain average limb darkened angular diameter values of LD(X Sgr) = 1.471 +/- 0.033 mas, LD(eta Aql) = 1.839 +/- 0.028 mas, LD(W Sgr) = 1.312 +/- 0.029 mas, LD(beta Dor) = 1.891 +/- 0.024 mas, LD(zeta Gem) =1.747 +/- 0.061 mas, LD(Y Oph) = 1.437 +/- 0.040 mas and LD(L Car) = 2.988 +/- 0.012 mas. For four of these stars (eta Aql, W Sgr, beta Dor, and L Car) we detect the pulsational variation of their angular diameter. This enables us to compute directly their distances, using a modified version of the…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Sesquiterpenes and Asteraceae Studies
