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A candidate short-period sub-Earth orbiting Proxima Centauri

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arxiv 2202.05188 v1 pith:TKHLJIRB submitted 2022-02-10 astro-ph.EP astro-ph.SR

classification astro-ph.EPastro-ph.SR
keywords activityanalysisorbitalproximacandidatecentauricompaniondays
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abstract

Proxima Centauri is the closest star to the Sun. This small, low-mass, mid M dwarf is known to host an Earth-mass exoplanet with an orbital period of 11.2 days within the habitable zone, as well as a long-period planet candidate with an orbital period of close to 5 years. We report on the analysis of a large set of observations taken with the ESPRESSO spectrograph at the VLT aimed at a thorough evaluation of the presence of a third low-mass planetary companion, which started emerging during a previous campaign. Radial velocities (RVs) were calculated using both a cross-correlation function (CCF) and a template matching approach. The RV analysis includes a component to model Proxima's activity using a Gaussian process (GP). We use the CCF's full width at half maximum to help constrain the GP, and we study other simultaneous observables as activity indicators in order to assess the nature of any potential RV signals. We detect a signal at 5.12 $\pm$ 0.04 days with a semi-amplitude of 39 $\pm$ 7 cm/s. The analysis of subsets of the ESPRESSO data, the activity indicators, and chromatic RVs suggest that this signal is not caused by stellar variability but instead by a planetary companion with a minimum mass of 0.26 $\pm$ 0.05 $M_\oplus$ (about twice the mass of Mars) orbiting at 0.029 au from the star. The orbital eccentricity is well constrained and compatible with a circular orbit.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. A systematic bias in template-based RV extraction algorithms

    astro-ph.EP 2025-06 conditional novelty 8.0 of 10

    Template-matching and line-by-line radial velocity pipelines show a systematic, always-negative intra-night drift (up to about 50 m/s per hour) when the stellar template is built from short-baseline data, while CCF RV...

  2. NuAncestor: an artificial satellite-borne star for accurate frequency calibration of ground-based EPRV spectrographs

    astro-ph.IM 2025-07 unverdicted novelty 6.0 of 10

    A concept for a satellite-borne optical frequency comb that would provide a universal absolute calibration source for precision radial-velocity spectrographs worldwide.

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