2015ApJ...800L..22I


Query : 2015ApJ...800L..22I

2015ApJ...800L..22I - Astrophys. J., 800, L22 (2015/February-3)

Gas giant planets as dynamical barriers to inward-migrating super-earths.

IZIDORO A., RAYMOND S.N., MORBIDELLI A., HERSANT F. and PIERENS A.

Abstract (from CDS):

Planets of 1-4 times Earth's size on orbits shorter than 100 days exist around 30-50% of all Sun-like stars. In fact, the Solar System is particularly outstanding in its lack of "hot super-Earths" (or "mini-Neptunes"). These planets–or their building blocks–may have formed on wider orbits and migrated inward due to interactions with the gaseous protoplanetary disk. Here, we use a suite of dynamical simulations to show that gas giant planets act as barriers to the inward migration of super-Earths initially placed on more distant orbits. Jupiter's early formation may have prevented Uranus and Neptune (and perhaps Saturn's core) from becoming hot super-Earths. Our model predicts that the populations of hot super-Earth systems and Jupiter-like planets should be anti-correlated: gas giants (especially if they form early) should be rare in systems with many hot super-Earths. Testing this prediction will constitute a crucial assessment of the validity of the migration hypothesis for the origin of close-in super-Earths.

Abstract Copyright:

Journal keyword(s): planets and satellites: formation - planet-disk interactions

Simbad objects: 7

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Number of rows : 7
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2025
#notes
1 Kepler-90 EB* 18 57 44.0383126392 +49 18 18.496454184   14.604 13.896 13.713   G2 149 0
2 Kepler-22 PM* 19 16 52.1902276920 +47 53 03.948648180   12.597 11.813 11.642   G5 104 1
3 Kepler-67 Ro* 19 36 36.8093759520 +46 09 59.166722448     16.4     ~ 51 1
4 Kepler-11 Er* 19 48 27.6226218768 +41 54 32.903163504   14.635 13.838 13.742   G2V 372 1
5 Kepler-32 Er* 19 51 22.1744302704 +46 34 27.390583380       15.563   M1V 116 1
6 Kepler-87 Ro* 19 51 40.0490199888 +46 57 54.425250252           F9 70 2
7 HD 204961 PM* 21 33 33.9751191976 -49 00 32.399427028 11.359 10.176 8.672 7.665 6.479 M1.5V 323 1

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