2020AJ....160..106H


Query : 2020AJ....160..106H

2020AJ....160..106H - Astron. J., 160, 106-106 (2020/September-0)

Modeling radial velocity data of resonant planets to infer migration histories.

HADDEN S. and PAYNE M.J.

Abstract (from CDS):

A number of giant-planet pairs with period ratios <=2 discovered by the radial velocity (RV) method may reside in mean motion resonances. Convergent orbital migration and resonant capture at the time of formation would naturally explain the present-day resonant orbital configurations of these systems. Planets that experience smooth migration and eccentricity-damping forces due to a protoplanetary disk should not only be captured into mean motion resonances but also end up in a specific dynamical configuration within the resonance, sometimes referred to as apsidal corotation resonance (ACR). Here we develop a method for testing the hypothesis that a planet pair resides in an ACR by directly fitting RV data. The ACR hypothesis strongly restricts the number of free parameters describing the RV signal, and we compare fits using this highly restricted model to fits using a more conventional two-planet RV model by using nested sampling simulations. We apply our method to HD 45364 and HD 33844, two systems hosting giant-planet pairs in 3:2 and 5:3 resonances, respectively. The observations of both systems are consistent with ACR configurations, which are formally preferred based on the Bayes factors computed from nested sampling simulations. We use the results of our ACR model fits to constrain the possible migration histories of these systems.

Abstract Copyright: © 2020. The American Astronomical Society. All rights reserved.

Journal keyword(s): Orbital resonances - Radial velocity - Exoplanet dynamics

Simbad objects: 8

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Number of rows : 8
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 33844 RG* 05 12 36.1003262136 -14 57 03.999312756   8.33 7.29     K0III 55 0
2 HD 45364b Pl 06 25 38.4743561928 -31 28 51.430718388           ~ 26 1
3 HD 45364c Pl 06 25 38.4743561928 -31 28 51.430718388           ~ 28 1
4 HD 45364 PM* 06 25 38.4743561928 -31 28 51.430718388   8.82 8.06     G8V 127 1
5 HD 82943 PM* 09 34 50.7353072232 -12 07 46.369202196   7.17 6.53     F9VFe+0.5 470 2
6 PSR B1257+12 Psr 13 00 03.1075 +12 40 55.155           ~ 517 1
7 HD 155358 PM* 17 09 34.6176428924 +33 21 21.085565784       7.0   G0 160 1
8 BD-15 6290 BY* 22 53 16.7325836486 -14 15 49.304052185 12.928 11.749 10.192 9.013 7.462 M3.5V 1016 1

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