2019A&A...623A...4S


Query : 2019A&A...623A...4S

2019A&A...623A...4S - Astronomy and Astrophysics, volume 623A, 4-4 (2019/3-1)

Secular spin-axis dynamics of exoplanets.

SAILLENFEST M., LASKAR J. and BOUE G.

Abstract (from CDS):


Context. Seasonal variations and climate stability of a planet are very sensitive to the planet obliquity and its evolution. This is of particular interest for the emergence and sustainability of land-based life, but orbital and rotational parameters of exoplanets are still poorly constrained. Numerical explorations usually realised in this situation are therefore in heavy contrast with the uncertain nature of the available data.
Aims. We aim to provide an analytical formulation of the long-term spin-axis dynamics of exoplanets, linking it directly to physical and dynamical parameters, but still giving precise quantitative results if the parameters are well known. Together with bounds for the poorly constrained parameters of exoplanets, this analysis is designed to enable a quick and straightforward exploration of the spin-axis dynamics.
Methods. The long-term orbital solution is decomposed into quasi-periodic series and the spin-axis Hamiltonian is expanded in powers of eccentricity and inclination. Chaotic zones are measured by the resonance overlap criterion. Bounds for the poorly known parameters of exoplanets are obtained from physical grounds (rotational breakup) and dynamical considerations (equipartition of the angular momentum deficit).
Results. This method gives accurate results when the orbital evolution is well known. The detailed structure of the chaotic zones for the solar system planets can be retrieved from simple analytical formulas. For less-constrained planetary systems, the maximal extent of the chaotic regions can be computed, requiring only the mass, the semi-major axis, and the eccentricity of the planets present in the system. Additionally, some estimated bounds of the precession constant allow to classify which observed exoplanets are necessarily out of major spin-orbit secular resonances (unless the precession rate is affected by the presence of massive satellites).

Abstract Copyright: © M. Saillenfest et al. 2019

Journal keyword(s): planets and satellites: dynamical evolution and stability - celestial mechanics - planets and satellites: general

Errata: erratum vol. 624, art 2 (2019)

Simbad objects: 102

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Number of rows : 102
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 142c Pl 00 06 19.1753245111 -49 04 30.671249608           ~ 20 1
2 HD 1605c Pl 00 20 31.5189144840 +30 58 29.302087188           ~ 9 0
3 HD 4732c Pl 00 49 13.9502186808 -24 08 11.990652936           ~ 17 1
4 HD 5319c Pl 00 55 01.3998443472 +00 47 22.401372408           ~ 15 0
5 HD 5319b Pl 00 55 01.3998443472 +00 47 22.401372408           ~ 30 1
6 CD-23 395 PM* 01 06 02.0495101320 -22 27 11.350993068   11.29 10.21     ~ 60 1
7 CD-23 395c Pl 01 06 02.0495101320 -22 27 11.350993068           ~ 7 1
8 * eta Cet b Pl? 01 08 35.3913324413 -10 10 56.151936084           ~ 5 0
9 * eta Cet c Pl? 01 08 35.3913324413 -10 10 56.151936084           ~ 6 0
10 HD 7449c Pl 01 14 29.3222869752 -05 02 50.614788804           ~ 11 1
11 HD 7449b Pl 01 14 29.3222869752 -05 02 50.614788804           ~ 26 1
12 * ups And d Pl 01 36 47.8415443907 +41 24 19.651368029           ~ 164 1
13 * ups And e Pl 01 36 47.8415443907 +41 24 19.651368029           ~ 30 1
14 HD 11506b Pl 01 52 50.5344163920 -19 30 25.108242192           ~ 28 1
15 HD 12661c Pl 02 04 34.2881404104 +25 24 51.513637932           ~ 59 1
16 WASP-53c Pl 02 07 38.2094562696 -20 39 42.758493948           ~ 6 0
17 HD 27894d Pl 04 20 47.0461066173 -59 24 39.024646358           ~ 4 0
18 L 591-6 PM* 04 28 35.7191141945 -25 10 09.297934937   13.6 11.962 11.629   M2.5 51 0
19 NAME L 591-6d Pl 04 28 35.7191141945 -25 10 09.297934937           ~ 13 0
20 HD 30177b Pl 04 41 54.3737734560 -58 01 14.727688572           ~ 40 1
21 HD 30177c Pl 04 41 54.3737734560 -58 01 14.727688572           ~ 12 0
22 HD 33844c Pl 05 12 36.1003262136 -14 57 03.999312756           ~ 10 0
23 HD 33844b Pl 05 12 36.1003262136 -14 57 03.999312756           ~ 11 0
24 HD 34445g Pl 05 17 40.9803494808 +07 21 12.053055060           ~ 7 0
25 HD 37124d Pl 05 37 02.4866159419 +20 43 50.832948117           ~ 44 1
26 HD 37605c Pl 05 40 01.7283246192 +06 03 38.072512008           ~ 17 1
27 HD 38529c Pl 05 46 34.9131388488 +01 10 05.502949860           ~ 82 1
28 HD 40307g Pl 05 54 04.2405000288 -60 01 24.493007640           ~ 30 1
29 HD 45364c Pl 06 25 38.4743561928 -31 28 51.430718388           ~ 28 1
30 HD 45364b Pl 06 25 38.4743561928 -31 28 51.430718388           ~ 26 1
31 HD 47366b Pl 06 37 40.7934964800 -12 59 06.422813988           ~ 9 0
32 HD 47366c Pl 06 37 40.7934964800 -12 59 06.422813988           ~ 9 0
33 HD 60532b Pl 07 34 03.1805638968 -22 17 45.843172440           ~ 25 1
34 HD 60532c Pl 07 34 03.1805638968 -22 17 45.843172440           ~ 25 1
35 HD 65216b Pl 07 53 41.3195697504 -63 38 50.353461420           ~ 30 1
36 HD 67087c Pl 08 07 39.7559315184 +31 33 04.740976332           ~ 6 0
37 HD 73526c Pl 08 37 16.4833548528 -41 19 08.790456324           ~ 44 1
38 HD 73526b Pl 08 37 16.4833548528 -41 19 08.790456324           ~ 53 1
39 NAME L 675-81c Pl 08 40 59.2057867166 -23 27 22.592748045           ~ 17 1
40 HD 74156c Pl 08 42 25.1219511432 +04 34 41.145751740           ~ 61 1
41 HD 75784c Pl 08 52 23.9418283800 +13 14 00.366273276           ~ 6 0
42 * rho01 Cnc d Pl 08 52 35.8111044043 +28 19 50.954994470           ~ 155 1
43 HD 82943b Pl 09 34 50.7353072232 -12 07 46.369202196           ~ 100 1
44 HD 82943c Pl 09 34 50.7353072232 -12 07 46.369202196           ~ 86 1
45 HD 82943d Pl? 09 34 50.7353072232 -12 07 46.369202196           ~ 6 0
46 HD 85390c Pl? 09 50 02.4966438384 -49 47 24.959191848           ~ 2 0
47 HD 87646C BD? 10 06 40.76 +17 53 42.3           ~ 5 0
48 HD 87646 ** 10 06 40.7699030736 +17 53 42.278595144   8.73 8.07     G2V 66 0
49 BD+20 2457b Pl 10 16 44.8671846183 +19 53 29.010025880           ~ 21 1
50 BD+20 2457c Pl 10 16 44.8671846183 +19 53 29.010025880           ~ 20 1
51 BD+20 2459b Pl 10 17 06.6759730608 +19 33 30.435253452           ~ 5 0
52 BD+20 2459c Pl 10 17 06.6759730608 +19 33 30.435253452           ~ 4 0
53 HD 89744c Pl? 10 22 10.5618854376 +41 13 46.309698444           ~ 6 0
54 HD 89744b Pl 10 22 10.5618854376 +41 13 46.309698444           ~ 58 1
55 * 24 Sex b Pl 10 23 28.3698081504 -00 54 08.092603368           ~ 20 1
56 * 24 Sex c Pl 10 23 28.3698081504 -00 54 08.092603368           ~ 17 1
57 HD 92788b Pl 10 42 48.5278074048 -02 11 01.525313004           ~ 47 1
58 HD 92788c Pl 10 42 48.5278074048 -02 11 01.525313004           ~ 9 0
59 * 47 UMa d Pl 10 59 27.9727514012 +40 25 48.920572724           ~ 26 1
60 Ross 1003c Pl 11 41 44.6358403057 +42 45 07.102117090           ~ 10 0
61 Ross 1003 PM* 11 41 44.6358403057 +42 45 07.102117090   13.36 13.795 11.524 9.18 M4.0V 139 1
62 HD 102272c Pl 11 46 23.5354430592 +14 07 26.352184620           ~ 13 1
63 HD 108874c Pl 12 30 26.8817398344 +22 52 47.377485192           ~ 40 1
64 * chi Vir b Pl 12 39 14.7669620640 -07 59 44.033845848           ~ 11 1
65 HD 113538c Pl 13 04 57.4765361506 -52 26 34.525896996           ~ 10 1
66 HD 113538b Pl 13 04 57.4765361506 -52 26 34.525896996           ~ 11 1
67 HD 121056 RG* 13 53 52.0613118474 -35 18 51.691786471   7.21 6.19     K0III 76 0
68 HD 121056c Pl 13 53 52.0613118474 -35 18 51.691786471           ~ 4 0
69 HD 125612d Pl 14 20 53.5176649416 -17 28 53.489705520           ~ 13 1
70 HD 128311b Pl 14 36 00.5602765558 +09 44 47.454573266           ~ 73 1
71 HD 128311c Pl 14 36 00.5602765558 +09 44 47.454573266           ~ 61 1
72 HD 133131A PM* 15 03 35.4459923952 -27 50 33.219468636   9.05 8.46 9.18   G2V 34 0
73 HD 133131Ac Pl 15 03 35.4459923952 -27 50 33.219468636           ~ 9 0
74 * 23 Lib c Pl 15 13 28.6669233518 -25 18 33.653388418           ~ 33 1
75 HD 141399e Pl 15 46 53.8131805104 +46 59 10.543183404           ~ 14 0
76 V* NN Ser CV* 15 52 56.1203524080 +12 54 44.429312196     16.51     DAO1+M4 273 0
77 HD 147018c Pl 16 23 00.1478804220 -61 41 19.559913914           ~ 14 1
78 HD 147873c Pl 16 25 45.1544778648 -33 34 01.644941244           ~ 5 0
79 HD 155358c Pl 17 09 34.6176428924 +33 21 21.085565784           ~ 26 1
80 HD 154857c Pl 17 11 15.7220463696 -56 40 50.871194796           ~ 13 1
81 CD-51 10924 PM* 17 30 11.2044753442 -51 38 13.130309109 12.317 11.028 9.585 8.675 8.60 M0V 112 1
82 CD-51 10924c Pl 17 30 11.2044753442 -51 38 13.130309109           ~ 16 1
83 HD 159868b Pl 17 38 59.5268792544 -43 08 43.842381468           ~ 28 1
84 * mu. Ara e Pl 17 44 08.7031414872 -51 50 02.591603160           ~ 45 2
85 HD 163607c Pl 17 53 40.4946041184 +56 23 31.040169720           ~ 18 1
86 * nu. Oph c Pl 17 59 01.5919129 -09 46 25.079852           ~ 17 1
87 * nu. Oph b Pl 17 59 01.5919129 -09 46 25.079852           ~ 13 1
88 HD 168443c Pl 18 20 03.9332862096 -09 35 44.614653900           ~ 93 1
89 HD 169830c Pl 18 27 49.4849984976 -29 49 00.700831380           ~ 46 1
90 Kepler-62f Pl 18 52 51.0518497680 +45 20 59.399622996           ~ 79 1
91 HD 183263b Pl 19 28 24.5713671072 +08 21 29.004515424           ~ 34 1
92 HD 183263c Pl 19 28 24.5713671072 +08 21 29.004515424           ~ 26 1
93 Kepler-419c Pl 19 41 40.2991189536 +51 11 05.168339880           ~ 18 0
94 Kepler-186f Pl 19 54 36.6535147488 +43 57 18.025920324           ~ 84 0
95 WASP-81c Pl? 20 16 49.8902431128 +03 17 38.458392288           ~ 2 0
96 HD 200964b Pl 21 06 39.8422794792 +03 48 11.226709188           ~ 23 1
97 HD 200964c Pl 21 06 39.8422794792 +03 48 11.226709188           ~ 21 1
98 HD 202206c Pl 21 14 57.7686051936 -20 47 21.161521320           ~ 45 1
99 HD 202206b Pl 21 14 57.7686051936 -20 47 21.161521320           ~ 57 1
100 HD 204313d Pl 21 28 12.2060861256 -21 43 34.518205128           ~ 13 1
101 HD 204313b Pl 21 28 12.2060861256 -21 43 34.518205128           ~ 21 1
102 TRAPPIST-1 LM* 23 06 29.3684948589 -05 02 29.037301866     18.798 16.466 14.024 M7.5e 995 0

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