Retrieval of Precise Radial Velocities from Near-Infrared High Resolution Spectra of Low Mass Stars
Peter Gao, Peter Plavchan, Jonathan Gagn\'e, Elise Furlan, Michael, Bottom, Guillem Anglada-Escud\'e, Russel White, Cassy Davison, Charles, Beichman, Carolyn Brinkworth, John Johnson, David Ciardi, James Wallace,, Bertrand Mennesson, Kaspar von Braun, Gautam Vasisht, Lisa Prato

TL;DR
This paper introduces a novel near-infrared radial velocity extraction pipeline for low-mass stars, achieving high precision measurements despite instrumental limitations, and demonstrating its effectiveness on known stellar and planetary systems.
Contribution
The paper presents a new RV extraction pipeline tailored for NIR spectra of low-mass stars, enabling high-precision measurements without separate stellar templates.
Findings
Achieved 35 m/s RV precision for GJ 15 A over 817 days.
Attained ~3 m/s RV precision for SV Peg over several days.
Data consistent with known planetary parameters of GJ 876.
Abstract
Given that low-mass stars have intrinsically low luminosities at optical wavelengths and a propensity for stellar activity, it is advantageous for radial velocity (RV) surveys of these objects to use near-infrared (NIR) wavelengths. In this work we describe and test a novel RV extraction pipeline dedicated to retrieving RVs from low mass stars using NIR spectra taken by the CSHELL spectrograph at the NASA Infrared Telescope Facility, where a methane isotopologue gas cell is used for wavelength calibration. The pipeline minimizes the residuals between the observations and a spectral model composed of templates for the target star, the gas cell, and atmospheric telluric absorption; models of the line spread function, continuum curvature, and sinusoidal fringing; and a parameterization of the wavelength solution. The stellar template is derived iteratively from the science observations…
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