# Five Intermediate-Period Planets from the N2K Sample

**Authors:** Debra A. Fischer, Steven S. Vogt, Geoffrey W. Marcy, R. Paul Butler,, Bun'ei Sato, Gregory W. Henry, Sarah Robinson, Gregory Laughlin, Shigeru Ida,, Eri Toyota, Masashi Omiya, Peter Driscoll, Genya Takeda, Jason T. Wright,, John A. Johnson

arXiv: 0704.1191 · 2009-11-13

## TL;DR

This paper reports the discovery of five new Jovian-mass exoplanets orbiting high-metallicity stars, with diverse orbital periods and eccentricities, expanding understanding of planetary systems around such stars.

## Contribution

First detection of five intermediate-period Jovian planets around high-metallicity stars from the N2K sample, including a highly eccentric short-period planet.

## Key findings

- Five new Jovian-mass planets discovered.
- Planets orbit stars with supersolar metallicity.
- One planet has a notably high orbital eccentricity.

## Abstract

We report the detection of five Jovian mass planets orbiting high metallicity stars. Four of these stars were first observed as part of the N2K program and exhibited low RMS velocity scatter after three consecutive observations. However, follow-up observations over the last three years now reveal the presence of longer period planets with orbital periods ranging from 21 days to a few years. HD 11506 is a G0V star with a planet of \msini = 4.74 \mjup in a 3.85 year orbit. HD 17156 is a G0V star with a 3.12 \mjup planet in a 21.2 day orbit. The eccentricity of this orbit is 0.67, one of the highest known for a planet with a relatively short period. The orbital period for this planet places it in a region of parameter space where relatively few planets have been detected. HD 125612 is a G3V star with a planet of \msini = 3.5 \mjup in a 1.4 year orbit. HD 170469 is a G5IV star with a planet of \msini = 0.67 \mjup in a 3.13 year orbit. HD 231701 is an F8V star with planet of 1.08 \mjup in a 142 day orbit. All of these stars have supersolar metallicity. Three of the five stars were observed photometrically but showed no evidence of brightness variability. A transit search conducted for HD 17156 was negative but covered only 25% of the search space and so is not conclusive.

## Full text

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## Figures

8 figures with captions in the complete paper: https://tomesphere.com/paper/0704.1191/full.md

## References

29 references — full list in the complete paper: https://tomesphere.com/paper/0704.1191/full.md

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Source: https://tomesphere.com/paper/0704.1191