2022A&A...667A..63Z


Query : 2022A&A...667A..63Z

2022A&A...667A..63Z - Astronomy and Astrophysics, volume 667A, 63 (2022/11-1)

Radial Velocity Survey for Planets around Young stars (RVSPY) Target characterisation and high-cadence survey.

ZAKHOZHAY O.V., LAUNHARDT R., MULLER A., BREMS S.S., EIGENTHALER P., GENNARO M., HEMPEL A., HEMPEL M., HENNING T., KENNEDY G.M., KIM S., KURSTER M., LACHAUME R., MANERIKAR Y., PATEL J.A., PAVLOV A., REFFERT S. and TRIFONOV T.

Abstract (from CDS):



em Context. The occurrence rate and period distribution of (giant) planets around young stars is still not as well constrained as for older main-sequence stars. This is mostly due to the intrinsic activity-related complications and the avoidance of young stars in many large planet search programmes. Yet, dynamical restructuring processes in planetary systems may last significantly longer than the actual planet formation phase and may well extend long into the debris disc phase, such that the planet populations around young stars may differ from those observed around main-sequence stars.

em Aims. We introduce our Radial Velocity Survey for Planets around Young stars (RVSPY), which is closely related to the NaCo-ISPY direct imaging survey, characterise our target stars, and search for substellar companions at orbital separations smaller than a few au from the host star.

em Methods. We used the FEROS spectrograph, mounted to the MPG/ESO 2.2 m telescope in Chile, to obtain high signal-to-noise spectra and time series of precise radial velocities (RVs) of 111 stars, most of which are surrounded by debris discs. Our target stars have spectral types between early F and late K, a median age of 400 Myr, and a median distance of 45 pc. During the initial reconnaissance phase of our survey, we determined stellar parameters and used high-cadence observations to characterise the intrinsic stellar activity, searched for hot companions with orbital periods of up to 10 days, and derived the detection thresholds for longer-period companions. In our analysis we, have included archival spectroscopic data, spectral energy distribution, and data for photometric time series from the TESS mission.

em Results. For all target stars we determined their basic stellar parameters and present the results of the high-cadence RV survey and activity characterisation. We have achieved a median single-measurement RV precision of 6 m s-1 and derived the short-term intrinsic RV scatter of our targets (median 23 m s-1), which is mostly caused by stellar activity and decays with an age from >100 m s-1 at <20 Myr to <20 m s-1 at >500 Myr. We analysed time series periodograms of the high-cadence RV data and the shape of the individual cross-correlation functions. We discovered six previously unknown close companions with orbital periods between 10 and 100 days, three of which are low-mass stars, and three are in the brown dwarf mass regime. We detected no hot companion with an orbital period <10 days down to a median mass limit of ∼1 MJup for stars younger than 500 Myr, which is still compatible with the established occurrence rate of such companions around main-sequence stars. We found significant RV periodicities between 1.3 and 4.5 days for 14 stars, which are, however, all caused by rotational modulation due to starspots. We also analysed the data for TESS photometric time series and found significant periodicities for most of the stars. For 11 stars, the photometric periods are also clearly detected in the RV data. We also derived stellar rotation periods ranging from 1 to 10 days for 91 stars, mostly from the TESS data. From the intrinsic activity-related short-term RV jitter, we derived the expected mass-detection thresholds for longer-period companions, and selected 84 targets for the longer-term RV monitoring.

Abstract Copyright: © O. V. Zakhozhay et al. 2022

Journal keyword(s): methods: observational - techniques: radial velocities - surveys - planets and satellites: detection - stars: activity - planetary systems

VizieR on-line data: <Available at CDS (J/A+A/667/A63): tablea1.dat tablea2.dat>

Status at CDS : Tables of objects will be appraised for possible ingestion in SIMBAD.

Simbad objects: 112

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Number of rows : 112
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 HD 105 PM* 00 05 52.5447817152 -41 45 11.044988352   8.13 7.53     G0V 175 0
2 HD 377 PM* 00 08 25.7454555168 +06 37 00.489407808   8.22 7.59   6.90 G2V 140 0
3 HD 870 PM* 00 12 50.2492819896 -57 54 45.394533396 8.344 8 7.226 6.803 6.416 K0V 88 0
4 HD 1466 Er* 00 18 26.1235857360 -63 28 38.980983432   8.00 7.46     F8V 113 0
5 * 9 Cet BY* 00 22 51.7884553555 -12 12 33.969921319 7.29 7.05 6.39     G2.5V 482 0
6 HD 3296 PM* 00 36 01.8539540328 -05 34 14.588932080   7.18 6.71     F6V 44 0
7 HD 3670 PM* 00 38 56.7030427128 -52 32 03.387011784   8.68 8.21     F5V 26 0
8 HD 5133 PM* 00 53 01.1348555154 -30 21 24.891057111 8.801 8.11 7.171 6.639 6.179 K2.5Vk: 166 0
9 HD 5349 PM* 00 55 11.7847065144 -16 58 17.618317608   8.91 7.91     K0IV 39 0
10 * nu. Phe PM* 01 15 11.1214282378 -45 31 53.992580679 5.65 5.54 4.96 4.47 4.11 F9VFe+0.4 254 0
11 BD-12 243 Er* 01 20 32.2680172224 -11 28 03.727949952   9.19 8.39     G9V 90 1
12 V* EX Cet BY* 01 37 35.4667815000 -06 45 37.529924796 8.862 8.459 7.656 7.218 6.817 K0/1V 137 0
13 HD 13246 PM* 02 07 26.1250439520 -59 40 45.941799000   8.02 7.50     F7V 86 1
14 HD 14082B BY* 02 17 24.7369490496 +28 44 30.411007188   8.33 7.74     G2V 110 0
15 HD 15060 PM* 02 23 35.5382090544 -55 37 00.482037528   7.49 7.02     F5V 36 0
16 HD 16673 SB* 02 40 12.4210104672 -09 27 10.335330216   6.294 5.790     F8VFe-0.4 240 0
17 HD 17925 RS* 02 52 32.1281856011 -12 46 10.968056223 7.48 6.91 6.05 5.34 4.89 K1V 506 0
18 V* IS Eri BY* 03 09 42.2876014080 -09 34 46.583173740   9.27 8.49   7.64 G8/K0V 101 0
19 HD 20759 PM* 03 19 23.5655702856 -36 33 53.540990316   8.16 7.71     F5V 30 0
20 * 10 Tau PM* 03 36 52.3837044168 +00 24 05.992097829 5.23 5.15 4.30 4.09 3.77 F9IV-V 558 0
21 HD 23356 PM* 03 43 55.3428341807 -19 06 39.233301647 8.711 8.012 7.081 6.555 6.098 K2V 138 0
22 HD 23484 PM* 03 44 09.1729719544 -38 16 54.372263223 8.449 7.875 6.996 6.516 6.09 K2V 120 0
23 HD 23340 * 03 44 11.6742670968 -05 54 23.115697524   10.00 8.95     G8/K0III 4 0
24 BD+23 551 * 03 48 16.9038570375 +23 38 12.420299844 10.74 10.67 10.11   9.48 F9V 76 0
25 HD 24649 PM* 03 53 27.2164653720 -41 13 21.739635156   7.73 7.22   6.62 F6V 36 0
26 * chi Tau B * 04 22 35.5525912128 +25 38 03.144964416   9.08 8.47     F8V 21 0
27 HD 28069 PM* 04 25 57.3385886640 +05 09 00.522160200   7.870 7.350     F7V 101 0
28 HD 28447 PM* 04 30 20.0590750584 +28 07 54.709154004   7.229 6.515     G5V 70 0
29 HD 31392 PM* 04 54 04.2085021752 -35 24 16.263520632   8.40 7.61     G9V 83 0
30 HD 33081 PM* 05 07 08.6686174368 -17 17 59.706235752   7.51 7.04     F7V 54 0
31 V* AI Lep RS* 05 40 20.7318851664 -19 40 10.934370120   9.58 8.95   8.335 G2V 33 0
32 HD 38397 Ro* 05 43 35.8089067368 -39 55 24.721640724   8.72 8.140   7.486 G0V 58 0
33 HD 38949 * 05 48 20.0587517352 -24 27 49.853027448   8.37 7.80     G1V 73 0
34 * eta Lep PM* 05 56 24.2934904501 -14 10 03.718335613 4.05 4.05 3.72 3.39 3.23 F2V 335 0
35 V* V1358 Ori BY* 06 19 08.0574987312 -03 26 20.361237864   8.52 7.95     G0V 111 0
36 HD 48370 PM* 06 43 01.0240363800 -02 53 19.317436872   8.64 7.91     K0V(+G) 28 0
37 HD 50571 PM* 06 50 01.0151260800 -60 14 56.921260776   6.548 6.098 7.26   F5VFe+0.4 82 0
38 HD 53143 PM* 06 59 59.6550515452 -61 20 10.252631566 8.035 7.609 6.803 6.375 5.99 G9V 156 0
39 HD 57703 PM* 07 23 04.6059358464 +18 16 24.274403580   7.20 6.77     F2 33 0
40 HD 59659 PM* 07 28 30.0605950752 -49 08 58.892417916   9.30 8.79     F7V 28 0
41 HD 59967 PM* 07 30 42.5117581608 -37 20 21.706958688 7.386 7.274 6.635 6.28 5.945 G3V 157 0
42 HD 72687 * 08 33 15.3792365064 -29 57 23.719088448   8.92 8.26     G5V 57 0
43 HD 76151 PM* 08 54 17.9470964696 -05 26 04.054298491 6.89 6.67 6.00     G2V 520 0
44 HD 76748 ** 08 54 51.2042580456 -63 42 06.991151904   10.29 9.44     K0V 31 0
45 HD 76653 PM* 08 55 11.7819040008 -54 57 56.768010084   6.171 5.698     F6V 71 0
46 CD-49 3972 * 08 56 10.7762694648 -49 29 26.646607536   10.90 10.24     F5 5 0
47 HD 84075 TT* 09 36 17.8234661352 -78 20 41.588588076   9.18 8.59     G2V 57 0
48 HD 90905 PM* 10 29 42.2298999216 +01 29 28.037560668       6.5   G1V 88 0
49 V* V419 Hya BY* 10 43 28.2715703736 -29 03 51.432666948 9.144 8.596 7.719 7.232 6.806 K1V 172 0
50 HD 93932 PM* 10 50 25.5125039592 -15 06 15.076668168   8.15 7.53     G3V 71 0
51 HD 101259 PM* 11 39 00.4423127832 -24 43 15.940160256   7.24 6.42     G6/8V 72 0
52 HD 102458 Y*O 11 47 24.5438206248 -49 53 03.018484572   9.70 9.07   8.40 G4V 92 0
53 HD 102902 SB* 11 50 42.0090938808 -33 08 28.400936172   8.068 7.371     G3V 36 0
54 HD 104231 * 12 00 09.4063855272 -57 07 01.995816216   9.03 8.54     F5V 35 1
55 HD 105912 PM* 12 11 21.7980679752 -03 46 43.933417032   7.36 6.94   6.43 F5V 47 0
56 CD-54 4621 Y*O 12 12 35.7599042112 -55 20 27.293187660   11.44 10.498   9.328 K0Ve 33 0
57 HD 107146 PM* 12 19 06.5018840304 +16 32 53.867731128   7.61   6.7   G2V 266 0
58 HD 107649 * 12 22 24.8547408624 -51 01 34.361873436   9.26 8.78     F5V 37 0
59 HD 108857 SB* 12 30 46.2736816536 -58 11 16.775677680   9.12 8.60     F7V 40 0
60 HD 109832 * 12 38 42.7767871464 -68 45 49.123435608   8.43 8.09     A9V 41 0
61 HD 111520 * 12 50 19.7183455512 -49 51 48.961948068   9.37 8.87     F5/6V 56 0
62 HD 111631 PM* 12 50 43.5668194245 -00 46 05.267733737 11.187 9.892 8.470 7.59 6.752 M0V 219 0
63 HD 114082 * 13 09 16.1926316904 -60 18 30.055543200   8.64 8.21     F3V 73 1
64 HD 115820 * 13 20 26.8121687568 -49 13 25.207170420   8.19 7.95     A7/8V 39 0
65 HD 117214 * 13 30 08.9748682296 -58 29 04.356014100   8.55 8.06     F6V 67 1
66 HD 117524 Ro* 13 31 53.6065402944 -51 13 33.260046672   10.60 9.892   8.984 G8V 48 0
67 CD-40 8031 Y*O 13 37 57.2943420144 -41 34 41.898243792   10.93 10.006   9.040 K0IV 33 0
68 HD 118972 PM* 13 41 04.1705560968 -34 27 50.962695660 8.278 7.78 6.92 6.448 8.390 K0V 101 0
69 CD-29 10609 * 13 48 57.8445002544 -30 22 04.740394800   11.11 10.37     ~ 4 0
70 HD 122948 PM* 14 04 43.2065903088 +04 46 45.799527540       8.1   G5 26 0
71 * 18 Boo PM* 14 19 16.2797193624 +13 00 15.483901068   5.788 5.396     F5IV 162 0
72 CD-46 9327 Y*O 14 27 05.5556875152 -47 14 21.748559964   11.42 10.585   9.639 G9V 29 0
73 HD 129590 * 14 44 30.9625895592 -39 59 20.628246480   9.96 9.33     G3V 53 0
74 * ksi Boo BY* 14 51 23.37993 +19 06 01.6994 5.618 5.370 4.593 3.91 3.48 G7Ve+K5Ve 467 0
75 HD 132950 PM* 15 01 29.9739833160 +15 52 07.991340528   10.21   9.103   K3+V 57 0
76 HD 134910 * 15 13 50.3906552256 -40 25 01.907755608   10.06 9.53     G0(V) 9 0
77 HD 135953 * 15 19 05.4199065216 -36 21 44.206811568   9.86 9.36     F5V 30 0
78 HD 138398 * 15 33 51.9258168360 -50 05 23.902295568   9.12 8.29     G5/8III+F 19 1
79 * g Lup PM* 15 41 11.3768069149 -44 39 40.341696305   5.036 4.633     F3/5V 200 0
80 HD 141011 * 15 48 24.7805155584 -42 37 05.009707056   9.39 8.97     F5V 35 0
81 HD 141521 * 15 51 13.7316442152 -42 18 51.332321016   10.98 10.25     G8IV 41 0
82 HD 143811 * 16 03 33.4250542272 -30 08 13.379590788   9.37 8.91     F5V 37 0
83 HD 145229 PM* 16 09 26.6275032840 +11 34 28.047914868   8.03 7.44     G0 76 0
84 HD 145560 * 16 13 34.3335858144 -45 49 03.691334676   9.34 8.90     F5V 42 0
85 HD 145972 * 16 16 03.8376412800 -49 04 29.396691408   8.75 8.40     F0V 40 0
86 HD 146181 * 16 16 28.3699390008 -38 44 12.357083976   9.63 9.16     F6V 38 0
87 HD 147594 Ro* 16 23 53.8604226048 -29 46 40.112300640   9.94 9.271   8.502 G3IV 40 0
88 HD 166348 PM* 18 12 21.3923423753 -43 26 41.452814364   9.649 8.372 7.59 6.9 M0V 72 0
89 HD 170773 PM* 18 33 00.9167301456 -39 53 31.275122964   6.630 6.217     F5V 72 0
90 HD 180134 PM* 19 18 09.7813021536 -53 23 13.511922864   6.844 6.362     F7V 59 0
91 HD 181327 PM* 19 22 58.9437222504 -54 32 16.975668624   7.50 7.04   6.49 F6V 278 0
92 HD 183216 PM* 19 29 40.5714208320 -30 47 51.933050700   7.74 7.14     G2V 66 0
93 HD 187897 PM* 19 52 09.3866065080 +07 27 36.162459072   7.75 7.13     G5 90 0
94 HD 190470 PM* 20 04 10.0458341784 +25 47 24.823863132 9.462 8.709 7.767 7.259 6.817 K3V 74 0
95 HD 191089 SB? 20 09 05.2156358688 -26 13 26.520165768   7.62 7.18     F5V 147 0
96 HD 191849 PM* 20 13 53.3962498530 -45 09 50.470550834 10.627 9.419 7.966 7.053 6.124 M0V 162 0
97 HD 199260 PM* 20 56 47.3316655128 -26 17 46.960329480   6.20 5.70     F6V 112 0
98 HD 201219 PM* 21 07 56.5197854640 +07 25 58.594324908       7.6   G5 72 0
99 HD 202917 Er* 21 20 49.9576157736 -53 02 03.155667216   9.32 8.67   7.882 G7V 168 0
100 HD 204277 PM* 21 27 06.6144795672 +16 07 26.949155664   7.226 6.725     F8V 65 0
101 HD 206893 PM* 21 45 21.9052532928 -12 47 00.060804636   7.11 6.67     F5V 101 0
102 HD 208038 PM* 21 53 05.3532467280 +20 55 49.871111232 9.734 9.078 8.148 7.638 7.18 K2.5V 65 0
103 HD 209253 * 22 02 32.9648144400 -32 08 01.486311108   7.12 6.63     F6.5V 90 0
104 HD 212695 PM* 22 26 14.4423110880 -02 47 20.316013980   7.38 6.95     F3V 33 0
105 HD 213941 PM* 22 36 07.7033310025 -54 36 38.230735408   8.25 7.58     G8VFe-1.3 107 0
106 CPD-72 2713 Er* 22 42 48.9340258128 -71 42 21.199866948   11.718 10.565 10.401 8.862 K7Ve 63 0
107 HD 218340 PM* 23 08 12.3705531504 -63 37 41.372351436   9.07 8.44     G3V 49 0
108 HD 218511 PM* 23 09 40.9505857486 -67 43 58.157714149   9.59 8.39     K6V 74 0
109 HD 219498 PM* 23 16 05.0251368456 +22 10 34.827156228   9.77 9.05     G5 27 0
110 HD 219482 PM* 23 16 57.6874876272 -62 00 04.312068048   6.146 5.647     F6V 120 0
111 HD 223340 PM* 23 48 50.4949536528 -28 07 15.663490608   10.1 9.28     K1V 38 0
112 CD-44 15399 * 23 56 22.2581026632 -43 45 51.638544936   11.00 10.45     ~ 3 0

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2023.09.21-13:39:06

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