2014ApJ...793L...3V


Query : 2014ApJ...793L...3V

2014ApJ...793L...3V - Astrophys. J., 793, L3 (2014/September-3)

From hot jupiters to super-earths via roche lobe overflow.

VALSECCHI F., RASIO F.A. and STEFFEN J.H.

Abstract (from CDS):

Through tidal dissipation in a slowly spinning host star, the orbits of many hot Jupiters may decay down to the Roche limit. We expect that the ensuing mass transfer will be stable in most cases. Using detailed numerical calculations, we find that this evolution is quite rapid, potentially leading to the complete removal of the gaseous envelope in a few gigayears, and leaving behind an exposed rocky core (a "hot super-Earth"). Final orbital periods are quite sensitive to the details of the planet's mass-radius relation and to the effects of irradiation and photo-evaporation, but could be as short as a few hours or as long as several days. Our scenario predicts the existence of planets with intermediate masses ("hot Neptunes") that should be found precisely at their Roche limit and in the process of losing mass through Roche lobe overflow. The observed excess of small single-planet candidate systems observed by Kepler may also be the result of this process. If so, the properties of their host stars should track those of the hot Jupiters. Moreover, the number of systems that produced hot Jupiters could be two to three times larger than one would infer from contemporary observations.

Abstract Copyright:

Journal keyword(s): planetary systems - planets and satellites: gaseous planets - planet-star interactions - stars: evolution - stars: general

Simbad objects: 5

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Number of rows : 5
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 WASP-12 EB* 06 30 32.7966092352 +29 40 20.263502460   12.14 11.57     G0V 309 1
2 Kepler-98 Er* 19 02 38.7947770872 +37 57 52.200110880       12.874   G7 55 0
3 Kepler-36 Er* 19 25 00.0428079600 +49 13 54.630900876   12.795 12.174 12.094   F2 219 1
4 Kepler-78 EB* 19 34 58.0137407208 +44 26 53.960186940   12.87 11.72     K2 83 1
5 HD 209458b Pl 22 03 10.7727465312 +18 53 03.549393384           ~ 1860 1

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