activity
20192021
most citedA thin shell of ionized gas explaining the IR excess of classical Cepheids

31 citations · 31 across the 2 of their papers we have counts for

collaborators

6 papers

astro-ph.SR2021

Mid-infrared circumstellar emission of the long-period Cepheid l Carinae resolved with VLTI/MATISSE

V. Hocdé, N. Nardetto, A. Matter +149

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, o…

astro-ph.GA2021

The influence of metallicity on the Leavitt Law from geometrical distances of Milky Way and Magellanic Clouds Cepheids

Louise Breuval, Pierre Kervella, Piotr Wielgórski +7

The Cepheid Period-Luminosity (PL) relation is the key tool for measuring astronomical distances and for establishing the extragalactic distance scale. In particular, the local val…

astro-ph.SR2020

Pulsating chromosphere of classical Cepheids. Calcium infrared triplet and H profile variations

V. Hocdé, N. Nardetto, S. Borgniet +10

It has been shown recently that the infrared emission of Cepheids, which is constant over the pulsation cycle, might be due to a pulsating shell of ionized gas of about 15\% of the…

astro-ph.SR2020

The Milky Way Cepheid Leavitt law based on Gaia DR2 parallaxes of companion stars and host open cluster populations

Louise Breuval, Pierre Kervella, Richard I. Anderson +12

Classical Cepheids provide the foundation for the empirical extragalactic distance ladder. Milky Way Cepheids are the only stars in this class accessible to trigonometric parallax…

astro-ph.SR2019

The Leavitt law of Milky Way Cepheids from Gaia DR2 static companion parallaxes

Louise Breuval, Pierre Kervella, Frédéric Arenou +13

Classical Cepheids (CCs) are at the heart of the empirical extragalactic distance ladder. Milky Way CCs are the only stars of this class accessible to trigonometric parallax measur…

astro-ph.SR201931 cited

A thin shell of ionized gas explaining the IR excess of classical Cepheids

V. Hocdé, N. Nardetto, E. Lagadec +12

Despite observational evidences, InfraRed (IR) excess of classical Cepheids are seldom studied and poorly understood, but probably induces systematics on the Period-Luminosity (PL)…