EXPRES. III. Revealing the Stellar Activity Radial Velocity Signature of ϵ Eridani with Photometry and Interferometry

Author:

Roettenbacher Rachael M.ORCID,Cabot Samuel H. C.ORCID,Fischer Debra A.ORCID,Monnier John D.ORCID,Henry Gregory W.ORCID,Harmon Robert O.,Korhonen HeidiORCID,Brewer John M.ORCID,Llama JoeORCID,Petersburg Ryan R.ORCID,Zhao Lily L.ORCID,Kraus StefanORCID,Le Bouquin Jean-BaptisteORCID,Anugu NarsireddyORCID,Davies Claire L.ORCID,Gardner TylerORCID,Lanthermann CyprienORCID,Schaefer GailORCID,Setterholm BenjaminORCID,Clark Catherine A.ORCID,Jorstad Svetlana G.ORCID,Kuehn KylerORCID,Levine StephenORCID

Abstract

Abstract The distortions of absorption line profiles caused by photospheric brightness variations on the surfaces of cool, main-sequence stars can mimic or overwhelm radial velocity (RV) shifts due to the presence of exoplanets. The latest generation of precision RV spectrographs aims to detect velocity amplitudes ≲ 10 cm s−1, but requires mitigation of stellar signals. Statistical techniques are being developed to differentiate between Keplerian and activity-related velocity perturbations. Two important challenges, however, are the interpretability of the stellar activity component as RV models become more sophisticated, and ensuring the lowest-amplitude Keplerian signatures are not inadvertently accounted for in flexible models of stellar activity. For the K2V exoplanet host ϵ Eridani, we separately used ground-based photometry to constrain Gaussian processes for modeling RVs and TESS photometry with a light-curve inversion algorithm to reconstruct the stellar surface. From the reconstructions of TESS photometry, we produced an activity model that reduced the rms scatter in RVs obtained with EXPRES from 4.72 to 1.98 m s−1. We present a pilot study using the CHARA Array and MIRC-X beam combiner to directly image the starspots seen in the TESS photometry. With the limited phase coverage, our spot detections are marginal with current data but a future dedicated observing campaign should allow for imaging, as well as allow the stellar inclination and orientation with respect to the debris disk to be definitively determined. This work shows that stellar surface maps obtained with high-cadence, time-series photometric and interferometric data can provide the constraints needed to accurately reduce RV scatter.

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 10 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Magnetic activity variability of nearby bright Sun-like stars by 4 yr intensive Hα line monitoring;Publications of the Astronomical Society of Japan;2023-12-04

2. The Extreme Stellar-signals Project. III. Combining Solar Data from HARPS, HARPS-N, EXPRES, and NEID;The Astronomical Journal;2023-09-27

3. Revised orbits of the two nearest Jupiters;Monthly Notices of the Royal Astronomical Society;2023-07-29

4. EXPRES. IV. Two Additional Planets Orbiting ρ Coronae Borealis Reveal Uncommon System Architecture;The Astronomical Journal;2023-07-05

5. Flaring latitudes in ensembles of low-mass stars;Monthly Notices of the Royal Astronomical Society;2023-06-07

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