© ESO, 2017. For over 10 years, we have carried out a precise radial velocity (RV) survey to find substellar companions around evolved G, K-type stars to extend our knowledge of planet formation and evolution. We performed high precision RV measurements for the giant star HD 208897 using an iodine (I 2 ) absorption cell. The measurements were made at TÜBA TAK National Observatory (TUG; RTT150) and Okayama Astrophysical Observatory (OAO). For the origin of the periodic variation seen in the RV data of the star, we adopted a Keplerian motion caused by an unseen companion. We found that the star hosts a planet with a minimum mass of m 2 sini = 1.40 M J , which is relatively low compared to those of known planets orbiting evolved intermediate-...
Context. Precision radial velocities are required to discover and characterize exoplanets. Optical s...
Aims. The aim of our paper is to investigate the low-amplitude and long-period variations in evolved...
Artículo de publicación ISIContext. Precision radial velocities are required to discover and charact...
© ESO, 2017. For over 10 years, we have carried out a precise radial velocity (RV) survey to find su...
Aims. Our primary goal is to search for planets around intermediate mass stars. We are also interest...
Context. We found evidence for a sub–stellar companion around the K giant star HD 110014. This cool ...
Most extrasolar planet discoveries using radial velocity measurements have been for solar-like G-st...
peer reviewedWe report on the discovery of a planetary companion candidate with a minimum mass M sin...
Context: We found evidence for a sub-stellar companion around the K giant star HD 110014. This cool ...
We present a TESS discovered planetary system with a short-period sub-Neptune, HD 307842 (or TOI 784...
Context. For over 12 yr, we have carried out a precise radial velocity (RV) survey of a sample of 37...
International audienceContext. For over 12 yr, we have carried out a precise radial velocity (RV) su...
Aims. The purpose of the present study is to research the origin of planetary companions by using a ...
Aims. The purpose of this paper is to detect and investigate the nature of long-term radial velocity...
Context. Precision radial velocities are required to discover and characterize exoplanets. Optical s...
Aims. The aim of our paper is to investigate the low-amplitude and long-period variations in evolved...
Artículo de publicación ISIContext. Precision radial velocities are required to discover and charact...
© ESO, 2017. For over 10 years, we have carried out a precise radial velocity (RV) survey to find su...
Aims. Our primary goal is to search for planets around intermediate mass stars. We are also interest...
Context. We found evidence for a sub–stellar companion around the K giant star HD 110014. This cool ...
Most extrasolar planet discoveries using radial velocity measurements have been for solar-like G-st...
peer reviewedWe report on the discovery of a planetary companion candidate with a minimum mass M sin...
Context: We found evidence for a sub-stellar companion around the K giant star HD 110014. This cool ...
We present a TESS discovered planetary system with a short-period sub-Neptune, HD 307842 (or TOI 784...
Context. For over 12 yr, we have carried out a precise radial velocity (RV) survey of a sample of 37...
International audienceContext. For over 12 yr, we have carried out a precise radial velocity (RV) su...
Aims. The purpose of the present study is to research the origin of planetary companions by using a ...
Aims. The purpose of this paper is to detect and investigate the nature of long-term radial velocity...
Context. Precision radial velocities are required to discover and characterize exoplanets. Optical s...
Aims. The aim of our paper is to investigate the low-amplitude and long-period variations in evolved...
Artículo de publicación ISIContext. Precision radial velocities are required to discover and charact...