Mid-infrared circumstellar emission of the long-period Cepheid l Carinae resolved with VLTI/MATISSE
arXiv:2103.17014 · doi:10.1051/0004-6361/202140626
Abstract
The nature of circumstellar envelopes (CSE) around Cepheids is still a matter of debate. The physical origin of their infrared (IR) excess could be either a shell of ionized gas, or a dust envelope, or both. This study aims at constraining the geometry and the IR excess of the environment of the long-period Cepheid Car (P=35.5 days) at mid-IR wavelengths to understand its physical nature. We first use photometric observations in various bands and Spitzer Space Telescope spectroscopy to constrain the IR excess of Car. Then, we analyze the VLTI/MATISSE measurements at a specific phase of observation, in order to determine the flux contribution, the size and shape of the environment of the star in the L band. We finally test the hypothesis of a shell of ionized gas in order to model the IR excess. We report the first detection in the L band of a centro-symmetric extended emission around l Car, of about 1.7 in FWHM, producing an excess of about 7.0\% in this band. In the N band, there is no clear evidence for dust emission from VLTI/MATISSE correlated flux and Spitzer data. On the other side, the modeled shell of ionized gas implies a more compact CSE () and fainter (IR excess of 1\% in the L band). We provide new evidences for a compact CSE of Car and we demonstrate the capabilities of VLTI/MATISSE for determining common properties of CSEs. While the compact CSE of Car is probably of gaseous nature, the tested model of a shell of ionized gas is not able to simultaneously reproduce the IR excess and the interferometric observations. Further Galactic Cepheids observations with VLTI/MATISSE are necessary for determining the properties of CSEs, which may also depend on both the pulsation period and the evolutionary state of the stars.
13 pages, 8 figures, accepted in Astronomy and Astrophysics
References in corpus (15)
- Three-dimensional mapping of the local interstellar medium with composite data
- CASSIS: The Cornell Atlas of Spitzer/Infrared Spectrograph Sources. II. High-resolution observations
- High resolution spectroscopy for Cepheids distance determination. III. A relation between gamma-velocities and gamma-asymmetries
- High resolution spectroscopy for Cepheids distance determination. II. A period- projection factor relation
- The Milky Way Cepheid Leavitt law based on Gaia DR2 parallaxes of companion stars and host open cluster populations
- A catalogue of stellar diameters and fluxes for mid-infrared interferometry
- Extended envelopes around Galactic Cepheids III. Y Oph and alpha Per from near-infrared interferometry with CHARA/FLUOR
- Tuning in on Cepheids: Radial velocity amplitude modulations. A source of systematic uncertainty for Baade-Wesselink distances
- Observational calibration of the projection factor of Cepheids IV. Period-projection factor relation of Galactic and Magellanic Cloud Cepheids
- A thin shell of ionized gas explaining the IR excess of classical Cepheids
- Inspecting the Cepheid distance ladder: The Hubble Space Telescope distance to the SNIa host galaxy NGC 5584
- Analysing the spectral energy distributions of Galactic classical Cepheids
- VEGA/CHARA interferometric observations of Cepheids. I. A resolved structure around the prototype classical Cepheid delta Cep in the visible spectral range
- Extended envelopes around Galactic Cepheids. V. Multi-wavelength and time-dependent analysis of IR excess
- Interferometric observations of eta Carinae with VINCI/VLTI
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- Extended envelopes around Galactic Cepheids. V. Multi-wavelength and time-dependent analysis of IR excess
- HARPS-N high spectral resolution observations of Cepheids II. The impact of the surface-brightness color relation on the Baade-Wesselink projection factor of eta Aql
- Metallicity estimation of MW, SMC and LMC classical Cepheids from the shape of the - and -band light curves
- Theoretical analysis of surface brightness-colour relations for late-type stars using MARCS model atmospheres
- Multiplicity of Galactic Cepheids from long-baseline interferometry V. High-accuracy orbital parallax and mass of SU Cygni
- Discovery of ionized circumstellar gas emission around the long-period Cepheid Carinae with ALMA