Literature DB >> 22684330

Migration-induced architectures of planetary systems.

Ewa Szuszkiewicz1, Edyta Podlewska-Gaca.   

Abstract

The recent increase in number of known multi-planet systems gives a unique opportunity to study the processes responsible for planetary formation and evolution. Special attention is given to the occurrence of mean-motion resonances, because they carry important information about the history of the planetary systems. At the early stages of the evolution, when planets are still embedded in a gaseous disc, the tidal interactions between the disc and planets cause the planetary orbital migration. The convergent differential migration of two planets embedded in a gaseous disc may result in the capture into a mean-motion resonance. The orbital migration taking place during the early phases of the planetary system formation may play an important role in shaping stable planetary configurations. An understanding of this stage of the evolution will provide insight on the most frequently formed architectures, which in turn are relevant for determining the planet habitability. The aim of this paper is to present the observational properties of these planetary systems which contain confirmed or suspected resonant configurations. A complete list of known systems with such configurations is given. This list will be kept by us updated from now on and it will be a valuable reference for studying the dynamics of extrasolar systems and testing theoretical predictions concerned with the origin and the evolution of planets, which are the most plausible places for existence and development of life.

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Year:  2012        PMID: 22684330      PMCID: PMC3389249          DOI: 10.1007/s11084-012-9287-0

Source DB:  PubMed          Journal:  Orig Life Evol Biosph        ISSN: 0169-6149            Impact factor:   1.950


  9 in total

1.  A compact system of small planets around a former red-giant star.

Authors:  S Charpinet; G Fontaine; P Brassard; E M Green; V Van Grootel; S K Randall; R Silvotti; A S Baran; R H Ostensen; S D Kawaler; J H Telting
Journal:  Nature       Date:  2011-12-21       Impact factor: 49.962

2.  Two Earth-sized planets orbiting Kepler-20.

Authors:  Francois Fressin; Guillermo Torres; Jason F Rowe; David Charbonneau; Leslie A Rogers; Sarah Ballard; Natalie M Batalha; William J Borucki; Stephen T Bryson; Lars A Buchhave; David R Ciardi; Jean-Michel Désert; Courtney D Dressing; Daniel C Fabrycky; Eric B Ford; Thomas N Gautier; Christopher E Henze; Matthew J Holman; Andrew Howard; Steve B Howell; Jon M Jenkins; David G Koch; David W Latham; Jack J Lissauer; Geoffrey W Marcy; Samuel N Quinn; Darin Ragozzine; Dimitar D Sasselov; Sara Seager; Thomas Barclay; Fergal Mullally; Shawn E Seader; Martin Still; Joseph D Twicken; Susan E Thompson; Kamal Uddin
Journal:  Nature       Date:  2011-12-20       Impact factor: 49.962

3.  Kepler-9: a system of multiple planets transiting a Sun-like star, confirmed by timing variations.

Authors:  Matthew J Holman; Daniel C Fabrycky; Darin Ragozzine; Eric B Ford; Jason H Steffen; William F Welsh; Jack J Lissauer; David W Latham; Geoffrey W Marcy; Lucianne M Walkowicz; Natalie M Batalha; Jon M Jenkins; Jason F Rowe; William D Cochran; Francois Fressin; Guillermo Torres; Lars A Buchhave; Dimitar D Sasselov; William J Borucki; David G Koch; Gibor Basri; Timothy M Brown; Douglas A Caldwell; David Charbonneau; Edward W Dunham; Thomas N Gautier; John C Geary; Ronald L Gilliland; Michael R Haas; Steve B Howell; David R Ciardi; Michael Endl; Debra Fischer; Gábor Fürész; Joel D Hartman; Howard Isaacson; John A Johnson; Phillip J MacQueen; Althea V Moorhead; Robert C Morehead; Jerome A Orosz
Journal:  Science       Date:  2010-08-26       Impact factor: 47.728

4.  The occurrence and mass distribution of close-in super-Earths, Neptunes, and Jupiters.

Authors:  Andrew W Howard; Geoffrey W Marcy; John Asher Johnson; Debra A Fischer; Jason T Wright; Howard Isaacson; Jeff A Valenti; Jay Anderson; Doug N C Lin; Shigeru Ida
Journal:  Science       Date:  2010-10-29       Impact factor: 47.728

5.  Images of a fourth planet orbiting HR 8799.

Authors:  Christian Marois; B Zuckerman; Quinn M Konopacky; Bruce Macintosh; Travis Barman
Journal:  Nature       Date:  2010-12-08       Impact factor: 49.962

6.  The use of transit timing to detect terrestrial-mass extrasolar planets.

Authors:  Matthew J Holman; Norman W Murray
Journal:  Science       Date:  2005-02-25       Impact factor: 47.728

7.  Direct imaging of multiple planets orbiting the star HR 8799.

Authors:  Christian Marois; Bruce Macintosh; Travis Barman; B Zuckerman; Inseok Song; Jennifer Patience; David Lafrenière; René Doyon
Journal:  Science       Date:  2008-11-13       Impact factor: 47.728

8.  A super-Earth transiting a nearby low-mass star.

Authors:  David Charbonneau; Zachory K Berta; Jonathan Irwin; Christopher J Burke; Philip Nutzman; Lars A Buchhave; Christophe Lovis; Xavier Bonfils; David W Latham; Stéphane Udry; Ruth A Murray-Clay; Matthew J Holman; Emilio E Falco; Joshua N Winn; Didier Queloz; Francesco Pepe; Michel Mayor; Xavier Delfosse; Thierry Forveille
Journal:  Nature       Date:  2009-12-17       Impact factor: 49.962

9.  A closely packed system of low-mass, low-density planets transiting Kepler-11.

Authors:  Jack J Lissauer; Daniel C Fabrycky; Eric B Ford; William J Borucki; Francois Fressin; Geoffrey W Marcy; Jerome A Orosz; Jason F Rowe; Guillermo Torres; William F Welsh; Natalie M Batalha; Stephen T Bryson; Lars A Buchhave; Douglas A Caldwell; Joshua A Carter; David Charbonneau; Jessie L Christiansen; William D Cochran; Jean-Michel Desert; Edward W Dunham; Michael N Fanelli; Jonathan J Fortney; Thomas N Gautier; John C Geary; Ronald L Gilliland; Michael R Haas; Jennifer R Hall; Matthew J Holman; David G Koch; David W Latham; Eric Lopez; Sean McCauliff; Neil Miller; Robert C Morehead; Elisa V Quintana; Darin Ragozzine; Dimitar Sasselov; Donald R Short; Jason H Steffen
Journal:  Nature       Date:  2011-02-03       Impact factor: 49.962

  9 in total
  1 in total

Review 1.  Review on the Role of Planetary Factors on Habitability.

Authors:  A Kereszturi; L Noack
Journal:  Orig Life Evol Biosph       Date:  2016-07-09       Impact factor: 1.950

  1 in total

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