2011ApJ...735...72G


Query : 2011ApJ...735...72G

2011ApJ...735...72G - Astrophys. J., 735, 72 (2011/July-2)

Effects of stellar flux on tidally locked terrestrial planets: Degree-1 mantle convection and local magma ponds.

GELMAN S.E., ELKINS-TANTON L.T. and SEAGER S.

Abstract (from CDS):

We model the geodynamical evolution of super-Earth exoplanets in synchronous rotation about their star. While neglecting the effects of a potential atmosphere, we explore the parameter spaces of both the Rayleigh number and intensity of incoming stellar flux, and identify two main stages of mantle convection evolution. The first is a transient stage in which a lithospheric temperature and thickness dichotomy emerges between the substellar and the antistellar hemispheres, while the style of mantle convection is dictated by the Rayleigh number. The second stage is the development of degree-1 mantle convection. Depending on mantle properties, the timescale of onset of this second stage of mantle evolution varies from order 1 to 100 billion years of simulated planetary evolution. Planets with higher Rayleigh numbers (due to, for instance, larger planetary radii than the Earth) and planets whose incoming stellar flux is high (likely for most detectable exoplanets) will develop degree-1 mantle convection most quickly, on the order of 1 billion years, which is within the age of many planetary systems. Surface temperatures range from 220 K to 830 K, implying the possibility of liquid water in some regions near the surface. These results are discussed in the context of stable molten magma ponds on hotter planets, and the habitability of super-Earths which may lie outside the Habitable Zone.

Abstract Copyright:

Journal keyword(s): convection - methods: numerical - planetary systems - planets and satellites: general - stars: individual (CoRoT-7, Gliese 581)

Simbad objects: 26

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Number of rows : 26
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 1461b Pl 00 18 41.8676757921 -08 03 10.803829898           ~ 35 1
2 HD 1461 PM* 00 18 41.8676757921 -08 03 10.803829898   7.14 6.46     G3VFe0.5 374 1
3 HD 7924 * 01 21 59.1137270904 +76 42 37.038255120   8.018 7.167     K0.5V 145 1
4 HD 7924b Pl 01 21 59.1137270904 +76 42 37.038255120           ~ 37 1
5 HD 285968 PM* 04 42 55.7750207949 +18 57 29.395947044 12.668 11.49 9.951 8.931 7.702 M2.5V 335 2
6 HD 285968b Pl 04 42 55.7750207949 +18 57 29.395947044           ~ 47 1
7 HD 40307 PM* 05 54 04.2405000288 -60 01 24.493007640 8.814 8.097 7.147 6.597 6.119 K2.5V 263 1
8 HD 40307b Pl 05 54 04.2405000288 -60 01 24.493007640           ~ 53 1
9 HD 40307d Pl 05 54 04.2405000288 -60 01 24.493007640           ~ 38 1
10 HD 40307c Pl 05 54 04.2405000288 -60 01 24.493007640           ~ 37 1
11 CoRoT-7 * 06 43 49.4690164104 -01 03 46.826642700   12.78 11.73 11.36 10.87 K0V 211 1
12 CoRoT-7b Pl 06 43 49.4690164104 -01 03 46.826642700           ~ 402 1
13 CoRoT-7c Pl 06 43 49.4690164104 -01 03 46.826642700           ~ 47 1
14 * rho01 Cnc e Pl 08 52 35.8111044043 +28 19 50.954994470           ~ 576 1
15 * rho01 Cnc EB* 08 52 35.8111044043 +28 19 50.954994470 7.45 6.82   5.4   K0IV-V 1121 1
16 * 61 Vir b Pl 13 18 24.3139864471 -18 18 40.297748582           ~ 55 1
17 * 61 Vir PM* 13 18 24.3139864471 -18 18 40.297748582 5.710 5.440 4.740     G6.5V 674 1
18 BD-07 4003d Pl 15 19 26.8269387505 -07 43 20.189497466           ~ 152 1
19 BD-07 4003e Pl 15 19 26.8269387505 -07 43 20.189497466           ~ 79 1
20 BD-07 4003c Pl 15 19 26.8269387505 -07 43 20.189497466           ~ 115 1
21 BD-07 4003 BY* 15 19 26.8269387505 -07 43 20.189497466 13.403 11.76 10.560 9.461 8.911 M3V 641 2
22 NAME G 139-21b Pl 17 15 18.9339850845 +04 57 50.066612336           ~ 720 1
23 G 139-21 PM* 17 15 18.9339850845 +04 57 50.066612336       14.394   M4.5V 325 1
24 HD 156668b Pl 17 17 40.4896074192 +29 13 38.018547948           ~ 29 1
25 BD-15 6290d Pl 22 53 16.7325836486 -14 15 49.304052185           ~ 157 1
26 BD-15 6290 BY* 22 53 16.7325836486 -14 15 49.304052185 12.928 11.749 10.192 9.013 7.462 M3.5V 1013 1

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