Doppler Shifted Transient Sodium Detection by KECK/HIRES
Abstract
We carried out the first high-resolution transit observations of the exoplanet WASP-49 Ab with Keck/HIRES. Upon custom wavelength calibration we achieve a Doppler RV precision of 60 . This is an improvement in RV stability of roughly 240 with respect to the instrument standard. We report an average sodium flux residual of 3.2 0.4 (8.0 ) comparable to previous studies. Interestingly, an average Doppler shift of -6.2 0.5 (12.4 ) is identified offset from the exoplanet rest frame. The velocity residuals \textit{in time} trace a blueshift (v -10.3 1.9 ) to redshift (v +4.1 1.5 ) suggesting the origin of the observed sodium is unlikely from the atmosphere of the planet. The average Na light curves indicate a depth of 0.47 0.04 % (11.7 ) enduring 90 minutes with a half-max duration of 40.1 minutes. Frequent high-resolution spectroscopic observations will be able to characterize the periodicity of the observed Doppler shifts. Considering the origin of the transient sodium gas is of unknown geometry, a co-orbiting natural satellite may be a likely source.
Keywords
Cite
@article{arxiv.2504.03974,
title = {Doppler Shifted Transient Sodium Detection by KECK/HIRES},
author = {Athira Unni and Apurva V. Oza and H. Jens Hoeijmakers and Julia V. Seidel and Thirupathi Sivarani and Carl A. Schmidt and Aurora Y. Kesseli and Katherine de Kleer and Ashley D. Baker and Andrea Gebek and Moritz Meyer zu Westram and Chloe Fisher and Steph Sallum and Manjunath Bestha and Aaron Bello-Arufe},
journal= {arXiv preprint arXiv:2504.03974},
year = {2025}
}
Comments
Version 2.0, 6 pages, 10 figures