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Table A.1

Intrinsic and observational characteristics of the 78 target stars of our sample sorted by number of observations (nobs).

ID nobs SpT M V RV RVT rms dRVT RVY rms dRVY S / N Flag
[M] [mag] [kms-1] [ms-1] [ms-1] [ms-1] [ms-1]

GJ 3998 137 M1 0.50 ± 0.05 10.85 44.81 4.24 1.17 4.99 1.82 42.6 (7)
GJ 4306 119 M1 0.53 ± 0.05 10.62 31.72 2.85 0.98 3.17 1.60 52.9
GJ 16 106 M1.5 0.48 ± 0.05 10.90 14.84 2.25 1.06 2.63 1.59 43.9
GJ 694.2 102 M0.5 0.55 ± 0.06 10.72 4.62 3.73 1.26 5.37 2.08 46.8 (1)
GJ 3942 97 M0 0.63 ± 0.07 10.19 18.71 5.61 1.10 5.87 1.87 59.2
GJ 625 97 M2 0.30 ± 0.07 10.13 12.85 2.68 0.78 2.54 1.01 64.7 (1)
GJ 49 94 M1.5 0.55 ± 0.05 9.57 5.78 5.47 0.77 5.92 1.08 81.6
GJ 2 93 M1 0.51 ± 0.05 9.93 0.04 3.69 0.79 4.03 1.07 72.7 (1)
GJ 119A 90 M1 0.55 ± 0.05 10.73 76.84 2.49 0.94 2.89 1.53 55.0
GJ 15A 88 M1 0.38 ± 0.05 8.10 12.00 2.29 0.49 2.25 0.48 163.1 (6)
GJ 4057 84 M0 0.59 ± 0.07 10.78 0.86 2.96 1.17 3.46 2.16 47.3 (1)
GJ 21 81 M1 0.53 ± 0.05 10.51 2.78 4.57 1.19 5.16 1.85 51.9
GJ 740 81 M0.5 0.58 ± 0.06 9.23 10.62 4.15 0.69 4.55 0.97 97.1 (1)
GJ 720A 77 M0.5 0.57 ± 0.06 9.85 31.31 3.60 0.79 3.80 1.26 71.9
GJ 412A 70 M0.5 0.38 ± 0.05 8.71 69.09 2.14 0.61 2.30 0.81 115.7
TYC 2703-706-1 68 M0.5 0.64 ± 0.06 11.87 21.71 28.58 2.61 25.79 5.26 29.5 (2)
GJ 47 66 M2 0.36 ± 0.06 10.83 7.76 2.86 0.96 3.18 1.42 43.3
GJ 9440 66 M1.5 0.51 ± 0.05 10.62 11.50 3.70 1.14 2.79 1.70 44.6 (1)
GJ 156.1A 63 M1.5 0.55 ± 0.05 10.86 20.32 2.68 1.08 3.19 1.71 44.4 (1)
GJ 3997 63 M0 0.49 ± 0.05 10.36 20.57 3.19 1.07 4.28 1.79 54.7 (1)
GJ 552 60 M2 0.47 ± 0.05 10.69 8.04 2.76 0.97 3.00 1.41 43.9
GJ 162 58 M1 0.50 ± 0.05 10.18 35.15 3.42 0.90 4.71 1.44 63.9 (1)
GJ 9689 57 M0.5 0.57 ± 0.06 11.30 67.70 4.65 1.39 5.75 2.85 35.2
GJ 150.1B 50 M1 0.51 ± 0.05 10.83 34.86 4.64 1.15 4.47 1.73 47.2
GJ 521A 50 M1.5 0.47 ± 0.05 10.24 65.16 2.24 0.85 2.87 1.22 54.3
GJ 685 44 M0.5 0.55 ± 0.06 9.98 14.70 6.49 0.87 6.93 1.42 67.2
GJ 184 43 M0.5 0.54 ± 0.05 9.96 65.95 2.59 0.89 2.79 1.43 67.9
GJ 26 39 M2.5 0.37 ± 0.07 11.06 0.17 2.82 1.03 3.07 1.54 38.7 (1)
GJ 3822 39 M0.5 0.56 ± 0.06 10.65 7.89 6.24 1.27 6.89 2.28 44.3
GJ 408 35 M2.5 0.35 ± 0.07 10.01 3.34 2.18 0.74 2.38 1.03 56.4
GJ 9404 33 M0.5 0.62 ± 0.07 10.62 0.50 3.83 0.98 4.01 1.96 51.2
NLTT 21156 33 M2 0.50 ± 0.05 11.23 14.08 16.94 2.27 18.64 3.30 25.3
GJ 399 30 M2.5 0.55 ± 0.06 11.30 3.43 3.25 1.41 4.01 2.31 28.9
GJ 414B 29 M2 0.50 ± 0.05 9.98 15.16 2.00 0.74 2.13 1.17 57.9
GJ 548A 29 M0 0.63 ± 0.08 9.76 9.63 4.30 0.69 4.09 1.46 71.2
GJ 1074 26 M0.5 0.52 ± 0.05 10.97 17.30 3.43 1.28 3.52 2.28 42.5
GJ 606 26 M1.5 0.46 ± 0.05 10.50 16.95 3.54 1.08 3.32 1.83 44.1
GJ 793 25 M3 0.33 ± 0.08 10.58 10.78 2.02 0.82 1.98 1.18 49.2
GJ 450 23 M1.5 0.45 ± 0.05 9.74 0.47 3.58 0.94 4.27 1.48 61.5
GJ 70 21 M2.5 0.37 ± 0.06 10.93 25.71 2.76 0.94 3.71 1.47 39.4
GJ 3649 17 M1.5 0.50 ± 0.05 10.76 31.74 2.10 1.15 2.73 2.04 43.2
GJ 2128 16 M2.5 0.34 ± 0.06 11.49 30.40 2.28 1.03 2.27 1.92 32.0
GJ 731 14 M0 0.57 ± 0.06 10.15 14.34 2.21 0.69 2.59 1.85 68.1
BPM 96441 13 M0 0.66 ± 0.08 11.84 6.42 3.56 1.41 5.58 3.55 34.9
GJ 4092 13 M0.5 0.62 ± 0.07 10.86 82.80 3.08 0.95 4.21 2.31 45.5
GJ 476 12 M3 0.38 ± 0.07 11.42 33.47 1.98 0.99 2.94 1.79 31.5
NLTT 53166 11 M0 0.58 ± 0.06 11.11 9.36 1.43 1.12 3.12 2.88 40.2
StKM 1-650 10 M0.5 0.61 ± 0.07 11.96 18.15 3.50 1.80 5.33 4.11 27.3
V*BR Psc 10 M1.5 0.37 ± 0.06 8.99 70.95 2.67 0.71 2.86 0.91 97.2
GJ 3117A 8 M2.5 0.43 ± 0.06 11.38 12.60 3.10 1.02 3.56 1.93 33.7
GJ 272 7 M1 0.50 ± 0.05 10.56 30.99 4.48 1.36 8.48 2.60 39.4 (2)
GJ 3352 7 M0.5 0.56 ± 0.06 11.07 71.69 2.82 0.78 2.80 2.18 41.9
TYC 3379-1077-1 7 M0 0.69 ± 0.08 11.56 29.04 2.28 2.04 9.79 5.55 23.6 (2)
GJ 671 6 M2.5 0.31 ± 0.09 11.38 19.32 1.146 0.61 1.03 1.35 39.5
2MASS J22353504+3712131 4 K7.5 0.62 ± 0.07 11.93 5.76 3.32 0.93 3.44 4.30 32.6
GJ 1030 4 M2 0.50 ± 0.05 11.43 17.12 0.83 0.57 1.32 1.94 36.7
GJ 895 4 M1.5 0.54 ± 0.05 10.03 33.00 1.25 0.48 0.41 1.11 70.9
GJ 119B 3 M3 0.47 ± 0.06 10.99 76.03 2.35 0.24 5.16 2.15 29.6
GJ 3126 2 M3 0.45 ± 0.07 11.13 83.94 0.02 0.01 0.25 1.17 44.0
GJ 686 2 M1 0.42 ± 0.05 9.62 9.33 0.85 0.02 1.77 1.02 72.6
TYC 3720-426-1 2 M0 0.62 11.34 3.29 2.18 0.15 1.28 4.92 38.0 (5)
TYC 743-1836-1 2 M0 0.62 ± 0.06 10.93 39.90 0.24 0.03 2.57 2.74 44.5
GJ 3014 1 M1.5 0.48 ± 0.05 11.12 15.39 0.95 3.01 24.5 (3)
GJ 3186 1 M1 0.53 ± 0.05 11.12 10.86 0.95 1.94 42.1 (3)
GJ 4196 1 M1 0.56 ± 0.05 11.06 67.70 0.95 2.38 42.9 (3)
NLTT 10614 1 M1.5 0.54 ± 0.05 11.22 5.88 0.95 2.20 36.6 (3)
NLTT 4188 1 M0.5 0.59 ± 0.06 11.42 8.30 0.95 2.48 41.2 (3)
NLTT 52021 1 M2 0.50 ± 0.05 11.56 27.59 1.76 2.34 29.9 (3)
TYC 1795-941-1 1 M0 0.62 11.28 21.33 0.95 4.99 41.0 (3), (5)
TYC 2710-691-1 1 K7.5 0.65 ± 0.07 11.91 10.99 1.76 4.16 39.4 (3)
CCDM J22441+4030A 0 M1.5 0.49 11.55 1.76 4.18 (3), (4), (5)
CCDM J22441+4030B 0 M2 0.45 11.57 1.76 4.18 (3), (4), (5)
G 243-30 0 M0 0.62 10.37 0.85 1.46 (3), (4), (5)
GJ 4120 0 M0 0.62 10.96 1.00 1.89 (3), (4), (5)
GJ 4173 0 M0 0.62 11.21 0.95 2.48 (3), (4), (5)
GJ 835 0 M0 0.62 9.83 0.72 1.27 (3), (4), (5)
NLTT 51676 0 M1 0.50 10.17 0.85 1.46 (3), (4), (5)
TYC 3997-1056-1 0 M1 0.50 11.60 1.76 4.18 (3), (4), (5)

Notes. We show the absolute RVs and their rms and the mean uncertainties dRV of every object for TERRA (T) and YABI (Y) pipelines. V magnitudes are from SIMBAD as are spectral types of the sources flagged with (5). Their masses are the average values of targets with the same spectral type. The ten stars flagged (1) are used in Sect. 3.4, the three stars flagged (2) are the ones with larger rms differences of TERRA and YABI mentioned in Fig. 3. The targets flagged (3) have TERRA uncertainties used for our simulations calculated as average values of targets of similar magnitude. The targets flagged with (4) have DRS/YABI uncertainties calculated the same way. The target marked with (6) has a companion discovered by Howard et al. (2014) with different data. Using HADES observations, the target marked with (7) has a companion published by Affer et al. (2016).

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