2020A&A...643A.112S


Query : 2020A&A...643A.112S

2020A&A...643A.112S - Astronomy and Astrophysics, volume 643A, 112-112 (2020/11-1)

The CARMENES search for exoplanets around M dwarfs. Three temperate-to-warm super-Earths.

STOCK S., NAGEL E., KEMMER J., PASSEGGER V.M., REFFERT S., QUIRRENBACH A., CABALLERO J.A., CZESLA S., BEJAR V.J.S., CARDONA C., DIEZ-ALONSO E., HERRERO E., LALITHA S., SCHLECKER M., TAL-OR L., RODRIGUEZ E., RODRIGUEZ-LOPEZ C., RIBAS I., REINERS A., AMADO P.J., BAUER F.F., BLUHM P., CORTES-CONTRERAS M., GONZALEZ-CUESTA L., DREIZLER S., HATZES A.P., HENNING T., JEFFERS S.V., KAMINSKI A., KURSTER M., LAFARGA M., LOPEZ-GONZALEZ M.J., MONTES D., MORALES J.C., PEDRAZ S., SCHOFER P., SCHWEITZER A., TRIFONOV T., ZAPATERO OSORIO M.R. and ZECHMEISTER M.

Abstract (from CDS):

We announce the discovery of two planets orbiting the M dwarfs GJ 251 (0.360±0.015M) and HD 238090 (0.578±0.021M) based on CARMENES radial velocity (RV) data. In addition, we independently confirm with CARMENES data the existence of Lalande 21185 b, a planet that has recently been discovered with the SOPHIE spectrograph. All three planets belong to the class of warm or temperate super-Earths and share similar properties. The orbital periods are 14.24d, 13.67d, and 12.95d and the minimum masses are 4.0±0.4M, 6.9±0.9M, and 2.7±0.3M for GJ 251 b, HD 238090 b, and Lalande 21185 b, respectively. Based on the orbital and stellar properties, we estimate equilibrium temperatures of 351.0±1.4K for GJ 251 b, 469.6±2.6K for HD 238090 b, and 370.1±6.8K for Lalande 21185 b. For the latter we resolve the daily aliases that were present in the SOPHIE data and that hindered an unambiguous determination of the orbital period. We find no significant signals in any of our spectral activity indicators at the planetary periods. The RV observations were accompanied by contemporaneous photometric observations. We derive stellar rotation periods of 122.1±2.2 d and 96.7±3.7 d for GJ 251 and HD 238090, respectively. The RV data of all three stars exhibit significant signals at the rotational period or its first harmonic. For GJ 251 and Lalande 21185, we also find long-period signals around 600d, and 2900d, respectively, which we tentatively attribute to long-term magnetic cycles. We apply a Bayesian approach to carefully model the Keplerian signals simultaneously with the stellar activity using Gaussian process regression models and extensively search for additional significant planetary signals hidden behind the stellar activity. Current planet formation theories suggest that the three systems represent a common architecture, consistent with formation following the core accretion paradigm.

Abstract Copyright: © ESO 2020

Journal keyword(s): planetary systems - techniques: radial velocities - stars: individual: GJ 251 - stars: individual: HD 238090 - stars: individual: Lalande 21185 - stars: late-type

VizieR on-line data: <Available at CDS (J/A+A/643/A112): tabled1.dat tabled2.dat tabled3.dat>

Simbad objects: 10

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Number of rows : 10
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 NAME YZ Cet b Pl 01 12 30.6368826382 -16 59 56.358011559           ~ 23 0
2 HD 265866b Pl? 06 54 48.9580633365 +33 16 05.438282419           ~ 8 0
3 HD 265866 PM* 06 54 48.9580633365 +33 16 05.438282419   11.47   9.650   M3V 236 0
4 Wolf 359 Er* 10 56 28.9208702274 +07 00 53.003285286 16.706 15.541 13.507 11.684 9.507 dM6 722 0
5 HD 95735b Pl 11 03 20.1948195942 +35 58 11.576182057           ~ 34 1
6 HD 95735 Er* 11 03 20.1948195942 +35 58 11.576182057 10.030 8.960 7.520 5.99 4.79 M2+V 718 0
7 HD 238090 PM* 12 12 20.8594045416 +54 29 08.722720968   11.28   9.315   K5V 106 0
8 G 197-50 PM* 12 12 21.1430894568 +54 29 23.189036064   15.2 13.530 13.066   M4.12 33 0
9 * alf Cen ** 14 39 40.4 -60 50 20   0.4 -0.1     G2V+K1V 954 0
10 NAME Barnard's star BY* 17 57 48.4984700685 +04 41 36.113879676 12.497 11.24 9.511 8.298 6.741 M4V 815 2

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