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The NEID Earth Twin Survey. I. Confirmation of a 31-day planet orbiting HD 86728

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arxiv 2409.12315 v1 pith:NR5OIINX submitted 2024-09-18 astro-ph.EP astro-ph.SR

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

With close to three years of observations in hand, the NEID Earth Twin Survey (NETS) is starting to unearth new astrophysical signals for a curated sample of bright, radial velocity (RV)-quiet stars. We present the discovery of the first NETS exoplanet, HD 86728 b, a $m_p\sin i = 9.16^{+0.55}_{-0.56}\ \rm{M}_\oplus$ planet on a circular, $P=31.1503^{+0.0062}_{-0.0066}$ d orbit, thereby confirming a candidate signal identified by Hirsch et al. (2021). We confirm the planetary origin of the detected signal, which has a semi-amplitude of just $K=1.91^{+0.11}_{-0.12}$ m s$^{-1}$, via careful analysis of the NEID RVs and spectral activity indicators, and we constrain the mass and orbit via fits to NEID and archival RV measurements. The host star is intrinsically quiet at the $\sim1$ m s$^{-1}$ level, with the majority of this variability likely stemming from short-timescale granulation. HD 86728 b is among the small fraction of exoplanets with similar masses and periods that have no known planetary siblings.

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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. Time-resolved p-mode oscillations for subgiant HD 142091 with NEID at WIYN

    astro-ph.SR 2025-06 conditional novelty 6.0 of 10

    P-mode oscillations in HD 142091 behave primarily as pure Doppler shifts of the average line profile, with a small, height-dependent amplitude variation across the line that is not chromatic.

  2. The NEID Earth Twin Survey. II. Dynamical Masses in Seven High-acceleration Star Systems

    astro-ph.EP 2025-05 conditional novelty 5.0 of 10

    Dynamical masses and improved orbits are determined for seven nearby star systems by jointly fitting thousands of radial velocities with Hipparcos and Gaia proper motion anomalies.

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