We perform, for the first time, a detailed long-term activity study of the binary system ζ Ret. We use all available HARPS spectra obtained between the years 2003 and 2016. We build a time series of the Mount Wilson S index for both stars, then we analyse these series by using Lomb-Scargle periodograms. The components ζ1 Ret and ζ2 Ret that belong to this binary system are physically very similar to each other and also similar to our Sun, which makes it a remarkable system. We detect in the solar-analogue star ζ2 Ret a long-term activity cycle with a period of ?10 yr, similar to the solar one (?11 yr). It is worthwhile to mention that this object satisfies previous criteria for a flat star and for a cycling star simultaneously. Another inte...
We are currently monitoring up to 40 Kepler candidate δ Scuti-γ Doradus (resp. γ Doradus-δ Scuti) hy...
Stellar activity can be a source of radial velocity (RV) noise and can reproduce periodic RV variati...
© D. Kossakowski et al. 2022. Artículo firmado por 37 autores. CARMENES is an instrument for the Cen...
In order to detect stellar activity cycles and study possiblestar-planet interactions (SPIs), we hav...
Context. The detection of chromospheric activity cycles in solar-Analogue and twin stars can be used...
Context. It is well known that from 1645 to 1715 solar activity was notably low and the number of su...
We study the short-term variability and long-term variability of the spectroscopic binary SZ Pictori...
Context. The eclipsing close binary UU Cas is an interacting massive double-periodic system with a g...
Context. Most stellar activity cycles similar to that found in the Sun have been detected by using t...
CONTEXT: The third Gaia data release provides photometric time series covering 34 months for about 1...
© ESO 2007. We would like to thank Dr. L.W. Ramsey for collaborating on the McDonald observing runs ...
Stellar activity influences radial velocity (RV) measurements and can also mimic the presence of orb...
HD 54662 AB is one of the three O + OB binaries known so far with orbital period longer than 1000 d,...
We present the results of a determination of the preliminary orbital elements of the spectroscopic b...
Context. Radial-velocity (RV) jitter caused by stellar magnetic activity is an important factor in s...
We are currently monitoring up to 40 Kepler candidate δ Scuti-γ Doradus (resp. γ Doradus-δ Scuti) hy...
Stellar activity can be a source of radial velocity (RV) noise and can reproduce periodic RV variati...
© D. Kossakowski et al. 2022. Artículo firmado por 37 autores. CARMENES is an instrument for the Cen...
In order to detect stellar activity cycles and study possiblestar-planet interactions (SPIs), we hav...
Context. The detection of chromospheric activity cycles in solar-Analogue and twin stars can be used...
Context. It is well known that from 1645 to 1715 solar activity was notably low and the number of su...
We study the short-term variability and long-term variability of the spectroscopic binary SZ Pictori...
Context. The eclipsing close binary UU Cas is an interacting massive double-periodic system with a g...
Context. Most stellar activity cycles similar to that found in the Sun have been detected by using t...
CONTEXT: The third Gaia data release provides photometric time series covering 34 months for about 1...
© ESO 2007. We would like to thank Dr. L.W. Ramsey for collaborating on the McDonald observing runs ...
Stellar activity influences radial velocity (RV) measurements and can also mimic the presence of orb...
HD 54662 AB is one of the three O + OB binaries known so far with orbital period longer than 1000 d,...
We present the results of a determination of the preliminary orbital elements of the spectroscopic b...
Context. Radial-velocity (RV) jitter caused by stellar magnetic activity is an important factor in s...
We are currently monitoring up to 40 Kepler candidate δ Scuti-γ Doradus (resp. γ Doradus-δ Scuti) hy...
Stellar activity can be a source of radial velocity (RV) noise and can reproduce periodic RV variati...
© D. Kossakowski et al. 2022. Artículo firmado por 37 autores. CARMENES is an instrument for the Cen...