Dynamical architecture of the HD 107148 system
Jan Eberhardt, Trifon Trifonov, Martin K\"urster, Stephan Stock,, Thomas Henning, Anna Wollbold, Sabine Reffert, Man Hoi Lee, Mathias, Zechmeister, Florian Rodler, Olga Zakhozhay, Paul Heeren, Davide Gandolfi,, Oscar Barrag\'an, Marcelo Tala Pinto, Vera Wolthoff, Paula Sarkis

TL;DR
This paper confirms and analyzes the dynamical architecture of the two-planet HD 107148 system using radial velocity data, revealing a stable, long-term orbital configuration with a Saturn-mass and a Neptune-mass planet.
Contribution
It provides a detailed dynamical analysis and validation of the two-planet system, including orbital fitting and stability assessment, based on new and existing radial velocity measurements.
Findings
Confirmed the existence of two planets with specific orbital periods and eccentricities.
Demonstrated the system's long-term stability through N-body simulations.
Identified the system as a rare configuration with a white dwarf companion.
Abstract
We present an independent Doppler validation and dynamical orbital analysis of the two-planet system HD 107148, which was recently announced in Rosenthal et al. (2021). Our detailed analyses are based on literature HIRES data and newly obtained HARPS and CARMENES radial velocity (RV) measurements as part of our survey in search for additional planets around single planet systems. We perform a periodogram analysis of the available HIRES and HARPS precise RVs and stellar activity indicators. We do not find any apparent correlation between the RV measurements and the stellar activity indicators, thus linking the two strong periodicities to a moderately compact multiple-planet system. We carry out orbital fitting analysis by testing various one- and two-planet orbital configurations and studying the posterior probability distribution of the fitted parameters. Our results solidify the…
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