Search for an exosphere in sodium and calcium in the transmission spectrum of exoplanet 55 Cancri e
A. R. Ridden-Harper, I. A. G. Snellen, C. U. Keller, R. J. de Kok, E., Di Gloria, H. J. Hoeijmakers, M. Brogi, M. Fridlund, B. L. A. Vermeersen, W., van Westrenen

TL;DR
This study searches for sodium and calcium exospheres around exoplanet 55 Cancri e using high-resolution spectra from multiple telescopes, finding tentative signals but no definitive detection due to low significance.
Contribution
First high-resolution, multi-telescope search for sodium and calcium exospheres in 55 Cancri e, providing constraints on their presence and strength.
Findings
Potential sodium exosphere signal at 3σ significance.
Possible calcium ion signal at 4.1σ, originating from one transit.
No unambiguous detection due to low significance and variability.
Abstract
[Abridged] The aim of this work is to search for an absorption signal from exospheric sodium (Na) and singly ionized calcium (Ca) in the optical transmission spectrum of the hot rocky super-Earth 55 Cancri e. Although the current best-fitting models to the planet mass and radius require a possible atmospheric component, uncertainties in the radius exist, making it possible that 55 Cancri e could be a hot rocky planet without an atmosphere. High resolution (R110000) time-series spectra of five transits of 55 Cancri e, obtained with three different telescopes (UVES/VLT, HARPS/ESO 3.6m & HARPS-N/TNG) were analysed. Targeting the sodium D lines and the calcium H and K lines, the potential planet exospheric signal was filtered out from the much stronger stellar and telluric signals, making use of the change of the radial component of the orbital velocity of the planet over the…
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