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A substellar companion around the intermediate-mass giant star HD 11977

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arxiv astro-ph/0505510 v1 pith:K6YW7PP4 submitted 2005-05-25 astro-ph

A substellar companion around the intermediate-mass giant star HD 11977

classification astro-ph
keywords starcompanionaroundintermediate-massmassstellarvariationbeen
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We report the discovery of a substellar companion to the intermediate-mass star HD 11977 (G5 III). Radial velocities of this star have been monitored for five years with FEROS at the 1.52-m ESO and later at the 2.2-m MPG/ESO telescope in La Silla, Chile. Based on the collected data we calculated an orbital solution with a period of P=711 days, a semi-amplitude of K1=105 m/s, and an eccentricity of e=0.4. The period of the radial-velocity variation is longer than that of the estimated stellar rotation, rendering it unlikely that rotational modulation is the source of the variation in the radial velocity. This hypothesis is supported by the absence of a correlation between stellar activity indicators and radial-velocity variation. By determining a primary stellar mass of Mstar=1.91 Msun, the best-fit minimum mass of the companion and semi-major axis of the orbit are m2sini=6.54 Mjup and a2=1.93 AU, respectively. An upper limit for the mass of the companion of m2 < 65.5 Mjup has been calculated from Hipparcos astrometric measurements. Although the possibility of a brown-dwarf companion cannot be excluded, HD 11977 B is one of the few planet candidates detected around an intermediate-mass star. The progenitor main-sequence star of HD 11977 is probably an A-type star. This discovery gives an indirect evidence for planetary companions around early type main-sequence stars.

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Cited by 1 Pith paper

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

  1. Origin of the Long-Period Radial Velocity Variation in the Red Supergiant HD 216946 (V424 Lac)

    astro-ph.SR 2026-07 conditional novelty 5.0

    The 1365-day radial-velocity period of HD 216946 is probably caused by chromospheric activity and extended-atmosphere dynamics, not by a Keplerian companion.