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The M dwarf Gliese 581 is believed to host four planets, including one (GJ 581d) near the habitable zone that could possibly support liquid water on its surface if it is a rocky planet. The detection of another habitable-zone planet--GJ…

Earth and Planetary Astrophysics · Physics 2014-07-08 Paul Robertson , Suvrath Mahadevan , Michael Endl , Arpita Roy

Anglada-Escud\'e and Tuomi question the statistical rigor of our analysis while ignoring the stellar activity aspects that we present. Although we agree that improvements in multiparametric radial velocity (RV) modeling are necessary for…

Earth and Planetary Astrophysics · Physics 2015-03-10 Paul Robertson , Suvrath Mahadevan , Michael Endl , Arpita Roy

Radial velocity measurements showed evidence that the M dwarf GL 581 might host a planet, GL 581d, in the so-called "habitable zone" of the star. A study of Halpha in GL 581 demonstrated that changes in this activity indicator correlated…

Solar and Stellar Astrophysics · Physics 2016-01-20 Artie P. Hatzes

The coherent low-frequency radio emission detected by LOFAR from Gliese 1151, a quiescent M4.5 dwarf star, has radio emission properties consistent with theoretical expectations of star-planet interactions for an Earth-sized planet on a 1-5…

The ubiquity of M dwarf stars combined with their low masses and luminosities make them prime targets in the search for nearby, habitable exoplanets. We investigate the effects of starspot-induced radial velocity (RV) jitter on detection…

Solar and Stellar Astrophysics · Physics 2015-06-23 Jan Marie Andersen , Heidi Korhonen

We present an analysis of the significantly expanded HARPS 2011 radial velocity data set for GJ 581 that was presented by Forveille et al. (2011). Our analysis reaches substantially different conclusions regarding the evidence for a…

Earth and Planetary Astrophysics · Physics 2015-06-05 Steven S. Vogt , R. Paul Butler , Nader Haghighipour

GJ 581 is a nearby M dwarf known to host a packed multiple planet system with 2 super-Earths and a Neptune-mass planet. We present new orbital analyses of the system, utilizing recent RV data obtained from the CARMENES spectrograph combined…

Stellar activity may induce Doppler variability at the level of a few m/s which can then be confused by the Doppler signal of an exoplanet orbiting the star. To first order, linear correlations between radial velocity measurements and…

The recent detection of the M dwarf GJ 1151 at 144 MHz low radio frequencies using LOFAR has been interpreted as evidence of an exoplanet magnetically interacting with its host star. This would be the first exoplanet detected around a main…

(Abridged) Searching for planets around stars with different masses probes the outcome of planetary formation for different initial conditions. This drives observations of a sample of 102 southern nearby M dwarfs, using a fraction of our…

Earth and Planetary Astrophysics · Physics 2015-06-03 X. Bonfils , X. Delfosse , S. Udry , T. Forveille , M. Mayor , C. Perrier , F. Bouchy , M. Gillon , C. Lovis , F. Pepe , D. Queloz , N. C. Santos , D. Ségransan , J. -L. Bertaux

The Gliese 581 planetary system has received attention because it has been proposed to host a low-mass planet in its habitable zone. We re-analyse the radial velocity measurements reported to contain six planetary signals to see whether…

Earth and Planetary Astrophysics · Physics 2015-05-27 Mikko Tuomi

Gliese 667C is an M1.5V star with a multi-planet system, including planet candidates in the habitable zone (HZ). The exact number of planets in the system is unclear, because the existing radial velocity (RV) measurements are known to…

Earth and Planetary Astrophysics · Physics 2015-06-22 Paul Robertson , Suvrath Mahadevan

GJ 581 is an M dwarf host of a multiplanet system. We use long-baseline interferometric measurements from the CHARA Array, coupled with trigonometric parallax information, to directly determine its physical radius to be $0.299 \pm 0.010…

We present an in-depth analysis of stellar activity and its effects on radial velocity (RV) for the M2 dwarf GJ 176 based on spectra taken over 10 years from the High Resolution Spectrograph on the Hobby-Eberly Telescope. These data are…

Solar and Stellar Astrophysics · Physics 2015-06-23 Paul Robertson , Michael Endl , Gregory W. Henry , William D. Cochran , Phillip J. MacQueen , Michael H. Williamson

Aims: The planetary system around the M star Gliese 581 consists of a hot Neptune (Gl 581b) and two super-Earths (Gl 581c and Gl 581d). The habitability of this system with respect to the super-Earths is investigated following a concept…

Astrophysics · Physics 2014-11-18 W. von Bloh , C. Bounama , M. Cuntz , S. Franck

Small planets around low-mass stars often show orbital periods in a range that corresponds to the temperate zones of their host stars which are therefore of prime interest for planet searches. Surface phenomena such as spots and faculae…

Context: How planet properties depend on stellar mass is a key diagnostic of planetary formation mechanisms. Aims: This motivates planet searches around stars which are significantly more massive or less massive than the Sun, and in…

GJ 581d is a potentially habitable super-Earth in the multiple system of exoplanets orbiting a nearby M dwarf. We investigate this planet's long-term dynamics, with an emphasis on its probable final rotation states acquired via tidal…

Earth and Planetary Astrophysics · Physics 2013-01-23 Valeri V. Makarov , Ciprian Berghea , Michael Efroimsky

Radial velocity surveys are now able to detect terrestrial planets at habitable distance from M-type stars. Recently, two planets with minimum masses below 10 Earth masses were reported in a triple system around the M-type star Gliese 581.…

Astrophysics · Physics 2008-02-18 Franck Selsis , J. F. Kasting , B. Levrard , J. Paillet , I. Ribas , X. Delfosse

We investigate the radial velocity variation of GJ 581 based on measurements from the HARPS and Keck HIRES spectrographs. A Fourier pre-whitening procedure is able to extract four planetary signals in the HARPS data and two from the Keck…

Solar and Stellar Astrophysics · Physics 2015-06-16 Artie P. Hatzes
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