2021A&A...649A.111A


Query : 2021A&A...649A.111A

2021A&A...649A.111A - Astronomy and Astrophysics, volume 649A, 111-111 (2021/5-1)

Stellar clustering and orbital architecture of planetary systems.

ADIBEKYAN V., SANTOS N.C., DEMANGEON O.D.S., FARIA J.P., BARROS S.C.C., OSHAGH M., FIGUEIRA P., DELGADO MENA E., SOUSA S.G., ISRAELIAN G., CAMPANTE T. and HAKOBYAN A.A.

Abstract (from CDS):


Context. Revealing the mechanisms shaping the architecture of planetary systems is crucial for our understanding of their formation and evolution. In this context, it has been recently proposed that stellar clustering might be the key in shaping the orbital architecture of exoplanets.
Aims. The main goal of this work is to explore the factors that shape the orbits of planets.
Methods. We performed different statistical tests to compare the properties of planets and their host stars associated with different stellar environments.
Results. We used a homogeneous sample of relatively young FGK dwarf stars with radial velocity detected planets and tested the hypothesis that their association to phase space (position-velocity) over-densities ("cluster" stars) and under-densities ("field" stars) impacts the orbital periods of planets. When controlling for the host star properties on a sample of 52 planets orbiting around cluster stars and 15 planets orbiting around field stars, we found no significant difference in the period distribution of planets orbiting these two populations of stars. By considering an extended sample of 73 planets orbiting around cluster stars and 25 planets orbiting field stars, a significant difference in the planetary period distributions emerged. However, the hosts associated with stellar under-densities appeared to be significantly older than their cluster counterparts. This does not allow us to conclude as to whether the planetary architecture is related to age, environment, or both. We further studied a sample of planets orbiting cluster stars to study the mechanism responsible for the shaping of orbits of planets in similar environments. We could not identify a parameter that can unambiguously be responsible for the orbital architecture of massive planets, perhaps, indicating the complexity of the issue.
Conclusions. An increased number of planets in clusters and in over-density environments will help to build large and unbiased samples which will then allow to better understand the dominant processes shaping the orbits of planets.

Abstract Copyright: © ESO 2021

Journal keyword(s): methods: statistical - planets and satellites: formation - planet-star interactions - stars: fundamental parameters

VizieR on-line data: <Available at CDS (J/A+A/649/A111): ages.dat>

Simbad objects: 177

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Number of rows : 177
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 HD 142 PM* 00 06 19.1753245111 -49 04 30.671249608   6.30 5.76     F7V 250 1
2 HD 564 PM* 00 09 52.8218497440 -50 16 04.168251444   8.90 8.29     G2/3V 67 0
3 HD 1237 PM* 00 16 12.6780107483 -79 51 04.244506480 7.692 7.335 6.578     G8V 233 1
4 HD 2638 ** 00 29 59.8721784936 -05 45 50.396133276   10.33 9.38 9.10 9.19 K1V 94 1
5 * 54 Psc PM* 00 39 21.8053928046 +21 15 01.712899720 7.29 6.71 5.88 5.21 4.82 K0.5V 582 1
6 HD 4113 PM* 00 43 12.5955916128 -37 58 57.477720936   8.61 7.88     G5V 98 1
7 HD 4208 PM* 00 44 26.6506707202 -26 30 56.455527913   8.46 7.79     G7VFe-1CH-0.5 201 1
8 HD 4203 PM* 00 44 41.2002505536 +20 26 56.138079876       8.2   G6V 140 1
9 HD 6434 PM* 01 04 40.1502696688 -39 29 17.584220159   8.32 7.71     G2/3V 228 1
10 CD-23 395 PM* 01 06 02.0495101320 -22 27 11.350993068   11.29 10.21     ~ 60 1
11 HD 7199 PM* 01 10 47.2210199784 -66 11 17.388251628   8.89 8.03     K1IV 86 1
12 HD 7449 PM* 01 14 29.3222869752 -05 02 50.614788804   8.08 7.48     F9.5V 118 2
13 HD 8574 PM* 01 25 12.5157281952 +28 34 00.103021788       6.8   F8 154 1
14 HD 9174 PM* 01 30 01.0020741024 -19 36 16.207733484   9.14 8.37     G8IV 40 0
15 * ups And PM* 01 36 47.8415443907 +41 24 19.651368029 4.70 4.64 4.10 3.64 3.35 F9V 963 1
16 HD 10180 * 01 37 53.5772394024 -60 30 41.482108548   7.95 7.32     G1V 193 2
17 * q01 Eri PM* 01 42 29.3145176952 -53 44 26.991453264   6.05 5.52     F9V 323 1
18 HD 11506 PM* 01 52 50.5344163920 -19 30 25.108242192   8.11 7.51     G0V 85 1
19 HD 11964 PM* 01 57 09.6074243168 -10 14 32.732533622   7.25 6.42     G9VCN+1 184 1
20 HD 12661 PM* 02 04 34.2881404104 +25 24 51.513637932   8.16   7.0   K0V 259 1
21 HD 13931 PM* 02 16 47.3787138792 +43 46 22.786242816       7.2   G0 96 1
22 * 79 Cet PM* 02 35 19.9291748518 -03 33 38.172943076   7.49 6.78     G2V 296 1
23 * iot Hor PM* 02 42 33.4666679022 -50 48 01.055138166   5.97 5.40     F8V 394 1
24 HD 17156 PM* 02 49 44.4871034544 +71 45 11.629235988   8.78 8.16     F9V 174 2
25 HD 17674 PM* 02 51 04.2855420984 +30 17 12.264074340   8.25 7.76 8.30   G0V 61 0
26 BD+20 518 PM* 03 11 14.2301712744 +21 05 50.493993288   9.26 8.50     G6V 112 1
27 * 94 Cet PM* 03 12 46.4365677072 -01 11 45.955808988   5.631 5.070     F8.5V 450 1
28 HD 20782 PM* 03 20 03.5777546706 -28 51 14.660358176   8.03 7.38     G1.5V 208 1
29 HD 20868 PM* 03 20 42.6937051450 -33 43 48.373545688   11.07 9.93     K3/4III/V 56 1
30 HD 23127 PM* 03 39 23.6377114944 -60 04 40.237770720   9.26 8.55     G2V 73 1
31 HD 23079 PM* 03 39 43.0959995592 -52 54 57.017412036   7.68 7.11     F9.5V 172 1
32 HD 24040 PM* 03 50 22.9675921536 +17 28 34.926384648   8.18   7.1   G1 126 1
33 HD 25171 PM* 03 55 49.4401130040 -65 11 12.029865612   8.293 7.78 7.77 7.74 F8V 71 1
34 HD 285507 PM* 04 07 01.2255871032 +15 20 06.105707556   11.670 10.473     K4 87 0
35 HD 27631 PM* 04 19 45.4692015480 -41 57 36.952683480   8.914 8.24 8.38   G3IV/V 64 1
36 HD 27894 PM* 04 20 47.0461066173 -59 24 39.024646358   10.42 9.42     K2V 83 1
37 HD 29021 PM* 04 37 52.2221165040 +60 40 34.311454320   8.45 7.76     G5 39 0
38 HD 30669 PM* 04 48 28.4853843840 -28 25 09.461730576   9.93 9.11     G8/K0V 69 0
39 HD 30562 PM* 04 48 36.3850851388 -05 40 26.557737782   6.40 5.77     G2IV 259 1
40 HD 31253 PM* 04 54 43.6537078752 +12 21 07.899691212   7.712 7.13 7.03   F8 80 1
41 HD 32963 PM* 05 07 55.7640826464 +26 19 40.674925236   8.22 7.59     G5IV 108 0
42 HD 34445 PM* 05 17 40.9803494808 +07 21 12.053055060   7.97 7.33     G0 98 1
43 HD 38283 PM* 05 37 02.0168219808 -73 41 57.645205440   7.26 6.696   8.35 F9.5V 83 1
44 HD 37124 PM* 05 37 02.4866159419 +20 43 50.832948117   8.35   7.2   G4IV-V 302 2
45 HD 37605 PM* 05 40 01.7283246192 +06 03 38.072512008   9.52   8.1   K0 110 1
46 BD-06 1339 PM* 05 53 00.2846861073 -05 59 41.441196105 12.27 11.041 9.693 8.855 8.099 K7V/M0V 93 1
47 HD 41004 PM* 05 59 49.6501762752 -48 14 22.888358520   9.49 8.62     K1IV 204 1
48 HD 42012 PM* 06 09 56.4680602440 +34 08 07.068371820   9.24   7.9   K0 39 0
49 HD 43691 PM* 06 19 34.6758728328 +41 05 32.302039092   8.59 8.02     G0IV 76 1
50 HD 45350 PM* 06 28 45.7110772080 +38 57 46.666538028   8.62 7.88     G5 103 1
51 HD 45652 PM* 06 29 13.1919972192 +10 56 02.005903500       7.6   K5 68 1
52 HD 46375 PM* 06 33 12.6224391648 +05 27 46.528531452   8.70 7.84     G9V 234 2
53 HD 47186 PM* 06 36 08.7879310512 -27 37 20.268367464   8.36 7.63     G6V 144 1
54 HD 50499 PM* 06 52 02.0241958872 -33 54 56.019365496   7.82 7.20     G0/2V 112 1
55 HD 52265 PM* 07 00 18.0357115416 -05 22 01.780929120   6.845 6.282     G0V 329 1
56 HD 63454 * 07 39 21.8529036120 -78 16 44.307818328   10.42 9.36     K3Vk: 89 1
57 HD 63765 PM* 07 47 49.7198598818 -54 15 50.920919607   8.85 8.10     G9V 93 1
58 HD 65216 PM* 07 53 41.3195697504 -63 38 50.353461420   8.65 7.96     G5V 142 1
59 HD 66428 PM* 08 03 28.6676662536 -01 09 45.758091420   8.97 8.26     G8IV(+G) 138 1
60 HD 68402 PM* 08 05 23.6912941632 -74 24 37.487264364   9.77 9.09     G5IV/V 33 0
61 HD 68988 PM* 08 18 22.1728652088 +61 27 38.595044628   8.84 8.19     G1V 155 2
62 HD 70642 PM* 08 21 28.1368486179 -39 42 19.484303527   7.89 7.18     G6VCN+0.5 170 1
63 HD 72659 PM* 08 34 03.1898361960 -01 34 05.582173152   8.08 7.47     G2V 158 1
64 HD 73267 PM* 08 36 17.7762322776 -34 27 35.919642672   9.66 8.87     K0V 71 1
65 HD 73526 PM* 08 37 16.4833548528 -41 19 08.790456324   9.69 9.00     G6V 190 2
66 HD 74156 PM* 08 42 25.1219511432 +04 34 41.145751740       7.2   G1V 227 2
67 HD 75289 PM* 08 47 40.3893739728 -41 44 12.455319264 7.04 6.94 6.36     F9VFe+0.3 279 1
68 HD 75898 PM* 08 53 50.8052389824 +33 03 24.520566888   8.67 8.03 10.6   G0 77 1
69 HD 76700 PM* 08 53 55.5161171358 -66 48 03.575953228   8.88 8.13     G6V 128 1
70 HD 79498 PM* 09 15 09.4020481584 +23 22 31.978671384       7.6   G5 67 1
71 HD 82943 PM* 09 34 50.7353072232 -12 07 46.369202196   7.17 6.53     F9VFe+0.5 470 2
72 HD 83443 PM* 09 37 11.8275201048 -43 16 19.933774320   9.03 8.24     K0/1V+G(III) 230 1
73 HD 86081 PM* 09 56 05.9184616896 -03 48 30.325874184   9.34 8.70     G1V 82 1
74 HD 86226 PM* 09 56 29.8441909920 -24 05 57.799322988   8.563 7.93 7.71   G2V 79 1
75 BD-08 2823 PM* 10 00 47.7204762252 -09 31 00.044866538   10.94 9.874 9.801   K4:V 71 1
76 HD 87883 PM* 10 08 43.1405863056 +34 14 32.146654632   8.54 7.55     K0V 112 1
77 HD 88133 PM* 10 10 07.6764870792 +18 11 12.728406552   8.88   7.5   G8V 114 1
78 HD 89307 PM* 10 18 21.2877106152 +12 37 15.990903516 7.650 7.590   6.7   G0V 120 1
79 HD 92788 PM* 10 42 48.5278074048 -02 11 01.525313004   8.01 7.30     G6V 237 1
80 HD 93083 PM* 10 44 20.9150176896 -33 34 37.287898176   9.27 8.33     K2IV-V 110 1
81 BD-10 3166 PM* 10 58 28.7841138528 -10 46 13.394735436   10.88 10.01 9.85 9.19 K3.0V 133 1
82 * 47 UMa PM* 10 59 27.9727514012 +40 25 48.920572724   5.66   4.7   G1-VFe-0.5 773 1
83 HD 95872 PM* 11 03 28.0903817544 -22 05 38.347443456   10.78 9.89     K0V 22 0
84 HD 96167 PM* 11 05 15.0688264032 -10 17 28.699238904   8.82 8.08     G3V 64 1
85 HD 99109 PM* 11 24 17.3585400216 -01 31 44.666848380   9.96 9.06     G8/K0IV 111 1
86 HD 100777 * 11 35 51.5232197976 -04 45 20.504631564   9.19 8.42     G8V 80 1
87 HD 101930 PM* 11 43 30.1133767737 -58 00 24.778676929   9.12 8.21     K2V+ 110 1
88 BD+31 2290 PM* 11 44 40.9643370921 +30 57 33.448132849   10.09   8.3   K4V 80 1
89 HD 102117 PM* 11 44 50.4608641248 -58 42 13.357947852   8.20 7.45     G6V 122 1
90 HD 102195 PM* 11 45 42.2928676296 +02 49 17.324140440       7.6   K0V 143 1
91 HD 103720 BY* 11 56 41.1855288192 -02 46 44.236262136   10.44 9.49     K1IV/V 60 0
92 HD 104067 PM* 11 59 10.0088449029 -20 21 13.612067116 9.683 8.897 7.921 7.369 6.913 K2V 126 1
93 HD 107148 PM* 12 19 13.4910214488 -03 19 11.239255452   8.72 8.02 8.888   G5V 129 1
94 HD 108147 PM* 12 25 46.2673666032 -64 01 19.516186956   7.532 6.994     F8/G0V 178 1
95 HD 108341 PM* 12 27 31.3935576768 -71 25 22.733054004   10.29 9.36     K2V 56 0
96 HD 108874 PM* 12 30 26.8817398344 +22 52 47.377485192   9.49   8.3   G9V 162 1
97 HD 109749 PM* 12 37 16.3785050928 -40 48 43.626163320   8.864 8.208 8.96   G3V 96 1
98 CD-29 9873 * 12 42 28.4949559632 -30 38 23.529045948   12.36 11.63 11.39 10.78 G8V 64 1
99 HD 114386 PM* 13 10 39.8240970781 -35 03 17.214743596   9.80 8.71     K3V 121 1
100 HD 114783 PM* 13 12 43.7855575272 -02 15 54.130663296 9.137 8.469 7.550 7.053 6.627 K1V 193 1
101 HD 114729 PM* 13 12 44.2591958183 -31 52 24.055985573   7.31 6.69     G0V 197 1
102 HD 117207 PM* 13 29 21.1129060560 -35 34 15.587968296   7.98 7.25     G7IV-V 141 1
103 HD 117618 PM* 13 32 25.5556238328 -47 16 16.913213976   7.77 7.17     G0V 126 1
104 HD 121504 PM* 13 57 17.2387351056 -56 02 24.159656364   8.12 7.52     G2V 174 1
105 HD 125612 PM* 14 20 53.5176649416 -17 28 53.489705520   8.93 8.32     G3V 122 1
106 HD 126525 PM* 14 27 32.9719003174 -51 55 59.106980352   8.529 7.85 7.56 8.31 G4V 108 1
107 HD 128311 BY* 14 36 00.5602765558 +09 44 47.454573266 9.232 8.441 7.446 6.895 6.425 K3V 311 1
108 HD 128356 PM* 14 37 04.8881850672 -25 48 09.258355080   9.30 8.26     K2.5IV 49 0
109 HD 130322 PM* 14 47 32.7262287384 -00 16 53.307811560   8.82 8.04     K0V 276 1
110 * 23 Lib PM* 15 13 28.6669233518 -25 18 33.653388418   7.168 6.46 6.43   G6IV-V 303 1
111 HD 137388 PM* 15 35 39.9216221928 -80 12 16.537858920   9.59 8.70 8.42 8.37 K2IV 73 1
112 HD 330075 PM* 15 49 37.6937569728 -49 57 48.678348924   10.23 9.33     G5 99 1
113 HD 142415 PM* 15 57 40.7919331560 -60 12 00.922058568   7.94 7.34     G1V 113 1
114 HD 143361 PM* 16 01 50.3482815576 -44 26 04.343412048   9.93 9.16     G6V 71 1
115 HD 147018 PM* 16 23 00.1478804220 -61 41 19.559913914   9.07 8.30     G8/K0V 66 1
116 HD 147513 PM* 16 24 01.2911377368 -39 11 34.729913940 6.17 6.02 5.376     G5V 350 1
117 HD 149026 PM* 16 30 29.6185771608 +38 20 50.308980864   8.75 8.14     G0IV 235 1
118 HD 150706 PM* 16 31 17.5830478008 +79 47 23.197555824   7.622 7.016     G0 213 1
119 HD 149143 PM* 16 32 51.0507175368 +02 05 05.380313604   8.56 7.89     G3V 101 1
120 HD 152079 PM* 16 53 29.7361827648 -46 19 58.638707832   9.91 9.16     G6V 65 1
121 HD 154345 PM* 17 02 36.4038090379 +47 04 54.764174452   7.50   6.3   G9 270 1
122 HD 153950 PM* 17 04 30.8706752112 -43 18 35.166055248   7.90 7.38     F8V 84 1
123 HD 155358 PM* 17 09 34.6176428924 +33 21 21.085565784       7.0   G0 160 1
124 HD 159243 PM* 17 33 21.5456483520 +05 42 02.633635440   9.19 8.65     G0 37 1
125 HD 159868 PM* 17 38 59.5268792544 -43 08 43.842381468   7.96 7.24     G5V 140 1
126 * mu. Ara PM* 17 44 08.7031414872 -51 50 02.591603160   5.85 5.15     G3IV-V 531 2
127 HD 163607 PM* 17 53 40.4946041184 +56 23 31.040169720   8.762 7.979 7.80   G5IV 73 1
128 HD 164509 * 18 01 31.2276013320 +00 06 16.403772384   8.723 8.103 7.85   G2V 73 1
129 HD 165155 PM* 18 05 57.3498037776 -29 55 02.088924600   10.20 9.36     G8V 43 0
130 HD 166724 PM* 18 13 59.6758981584 -42 34 31.355820804   10.20 9.34 8.96 9.37 K0IV/V 62 1
131 HD 168746 PM* 18 21 49.7826927816 -11 55 21.652464900   8.66 7.95     G5V 194 2
132 HD 170469 PM* 18 29 10.9810932744 +11 41 43.803283884   8.86 8.18     G5 88 1
133 HD 171238 PM* 18 34 43.6759102128 -28 04 20.327373264   9.41 8.65     G8V 61 1
134 BD+61 1762 PM* 18 36 53.1538638288 +61 42 09.015131916       8.1   G5 35 1
135 HD 179949 BY* 19 15 33.2300695008 -24 10 45.671448072   6.772 6.237     F8V 405 1
136 BD+48 2893 Er* 19 24 07.7659706688 +49 02 24.928348272   10.73 10.08 9.914   G1V 135 1
137 HD 181433 PM* 19 25 09.5666936172 -66 28 07.676956827   9.42 8.38     K3III-IV 124 1
138 BD+38 3583 Er* 19 25 40.3885404552 +38 40 20.413186860   10.73 10.00 9.853   G5V 117 0
139 HD 183263 * 19 28 24.5713671072 +08 21 29.004515424   8.51 7.86     G6IV 129 1
140 HD 231701 PM* 19 32 04.1609196504 +16 28 27.443142588   9.486 8.97     F8V 60 1
141 * 16 Cyg B PM* 19 41 51.9726777456 +50 31 03.089030916 7.07 6.86 6.20 5.76 5.42 G3V 890 1
142 HD 187123 PM* 19 46 58.1122487784 +34 25 10.281404460       7.4   G2V 246 1
143 HD 187085 PM* 19 49 33.9666332064 -37 46 49.973441628   7.78 7.21     G0V 97 1
144 BD+47 2936 EB* 19 50 50.2472976936 +48 04 51.101390496       8.8   K4V 300 2
145 HD 188015 PM* 19 52 04.5426976824 +28 06 01.345077360   8.95 8.23     G5IV 96 1
146 HD 189733 BY* 20 00 43.7129433648 +22 42 39.073143456 9.241 8.578 7.648 7.126 6.68 K2V 895 1
147 HD 190360 PM* 20 03 37.4050868074 +29 53 48.492435887   6.44   5.2   G7IV-V 444 1
148 HD 190647 PM* 20 07 19.6699756416 -35 32 19.077690912   8.54 7.78     G5V 94 1
149 HD 192263 BY* 20 13 59.8455790536 -00 52 00.769626768 9.447 8.724 7.767 7.231 6.771 K1/2V 244 1
150 HD 196050 PM* 20 37 51.7098518376 -60 38 04.145969904   8.16 7.49   9.01 G3V 157 1
151 HD 197037 PM* 20 39 32.9599353024 +42 14 54.778250868       6.61   G0 69 1
152 HD 196885 PM* 20 39 51.8748403032 +11 14 58.700231052   6.92 6.385 6.32   F8V 194 1
153 CD-34 14724B EB* 20 55 09.1576722384 -34 08 07.913816448       10.51 10.06 F9 28 0
154 HD 204313 PM* 21 28 12.2060861256 -21 43 34.518205128   8.696 8.02 7.76   G5V 121 2
155 HD 204941 PM* 21 32 23.5097206385 -20 57 26.718667631   9.39 8.48     K2V 89 1
156 HD 205739 PM* 21 38 08.4040108824 -31 44 14.938543824   9.09 8.54     F7V 53 1
157 HAT-P-17 PM* 21 38 08.7310010424 +30 29 19.446386748   11.33 10.38 10.24   G0 63 1
158 HD 207832 PM* 21 52 36.2807481168 -26 01 35.611377564   9.48 8.79     G5V 94 1
159 HD 208487 PM* 21 57 19.8476861856 -37 45 49.045448556   8.02 7.47     G1/3(V) 121 1
160 HD 209458 V* 22 03 10.7727465312 +18 53 03.549393384   8.21 7.63     F9V 1114 1
161 * eps Ind PM* 22 03 21.6536261624 -56 47 09.522795714   5.75 4.69     K5V 550 0
162 WASP-47 * 22 04 48.7261549272 -12 01 07.998743676     11.99 11.82   ~ 164 1
163 HD 210277 PM* 22 09 29.8657847411 -07 32 55.162082226   8.85 8.57 7.36   G8V 341 1
164 HD 212301 PM* 22 27 30.9220205424 -77 43 04.526779008   8.31 7.76     F8V 101 1
165 HD 215497 PM* 22 46 36.7539769920 -56 35 58.326725148   9.92 8.95     K3V 59 1
166 * tau01 Gru PM* 22 53 37.9323502176 -48 35 53.823928380 6.85 6.66 6.04     G0V 204 1
167 * rho Ind PM* 22 54 39.4819393536 -70 04 25.352060772 6.95 6.71 6.05     G1VFe+0.3 191 1
168 HD 216770 PM* 22 55 53.7084389616 -26 39 31.544278128   8.92 8.10     G9VCN+1 138 1
169 * 51 Peg PM* 22 57 27.9804852576 +20 46 07.797040104 6.39 6.16 5.46 4.97 4.61 G2IV 1159 1
170 HD 217107 ** 22 58 15.5408995872 -02 23 43.383234768   6.919 6.163     G8IV/V 368 1
171 HD 218566 PM* 23 09 10.7269903047 -02 15 38.682667763   9.641 9.208 9.105 8.73 K3V 106 1
172 HD 219134 Er* 23 13 16.9749603608 +57 10 06.083823619 7.460 6.560 5.570 4.76 4.23 K3V 601 1
173 HD 220689 PM* 23 25 52.9917010896 -20 36 57.699812916   8.355 7.76 7.65 8.59 G3V 63 1
174 HD 220773 PM* 23 26 27.4448301552 +08 38 37.841644968       6.97   G0 69 1
175 HD 221287 PM* 23 31 20.3384562072 -58 12 35.033565312   8.31 7.81     F7V 82 1
176 HD 221585 PM* 23 32 54.0463989760 +63 09 19.734848939   8.18   7.0   G8IV 68 0
177 HD 224693 PM* 23 59 53.8317247296 -22 25 41.216257992   8.87 8.22     G2V 87 1

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