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相关论文: Proximity of exoplanets to first-order mean-motion…

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Recent observations of Kepler multi-planet systems have revealed a number of systems with planets very close to second-order mean motion resonances (MMRs, with period ratio $1:3$, $3:5$, etc.) We present an analytic study of resonance…

地球与行星天体物理 · 物理学 2021-11-03 Wenrui Xu , Dong Lai

We study the dynamics of a system of two super-Earths embedded in a protoplanetary disc. We build a simple model of an irradiated viscous disc and use analytical prescriptions for the planet-disc interactions which lead to migration. We…

地球与行星天体物理 · 物理学 2015-09-09 Cezary Migaszewski

A number of multiplanet systems are observed to contain planets very close to mean motion resonances, although there is no significant pileup of precise resonance pairs. We present theoretical and numerical studies on the outcome of capture…

地球与行星天体物理 · 物理学 2018-09-12 Wenrui Xu , Dong Lai , Alessandro Morbidelli

Capture into mean motion resonance (MMR) is an important dynamical mechanism as it shapes the final architecture of a planetary system. We simulate systems of two or three planets undergoing migration with varied initial parameters such as…

地球与行星天体物理 · 物理学 2023-01-11 Kaltrina Kajtazi , Antoine C. Petit , Anders Johansen

This paper focuses on two-planet systems in a first-order $(q+1):q$ mean motion resonance and undergoing type-I migration in a disc. We present a detailed analysis of the resonance valid for any value of $q$. Expressions for the equilibrium…

地球与行星天体物理 · 物理学 2018-10-17 Caroline Terquem , John Papaloizou

Mean-motion resonances (MMRs) form through convergent disc migration of planet pairs, which may be disrupted by dynamical instabilities after protoplanetary disc (PPD) dispersal. This scenario is supported by recent analysis of TESS data…

地球与行星天体物理 · 物理学 2025-05-21 Yi-Xian Chen , Yinhao Wu , Ya-Ping Li , Douglas N. C. Lin , Richard Alexander , Sergei Nayakshin , Fei Dai

Planets migrating in their natal discs can be captured into mean-motion resonance (MMR), in which the planets' periods are related by integer ratios. Recent observations indicate that planets in MMR can be either apsidally aligned or…

地球与行星天体物理 · 物理学 2022-10-26 JT Laune , Laetitia Rodet , Dong Lai

We study the migration of three-planet systems in an irradiated 1+1D $\alpha$-disc with photoevaporation. We performed $2700$ simulations with various planets' masses and initial orbits. We found that most of the systems which ended up as…

地球与行星天体物理 · 物理学 2016-03-09 Cezary Migaszewski

The Kepler mission has discovered that multiple close-in super-Earth planets are common around solar-type stars, but their period ratios do not show strong pile-ups near mean motion resonances (MMRs). One scenario is that super-Earths form…

地球与行星天体物理 · 物理学 2017-04-26 Beibei Liu , Chris W. Ormel , Douglas N. C. Lin

We present an analytical and numerical study of the orbital migration and resonance capture of fictitious two-planet systems with masses in the super-Earth range undergoing Type-I migration. We find that, depending on the flare index and…

地球与行星天体物理 · 物理学 2017-06-28 X. S. Ramos , C. Charalambous , P. Benítez-Llambay , C. Beaugé

Pairs of migrating extrasolar planets often lock into mean motion resonance as they drift inward. This paper studies the convergent migration of giant planets (driven by a circumstellar disk) and determines the probability that they are…

地球与行星天体物理 · 物理学 2015-05-20 Jacob A. Ketchum , Fred C. Adams , Anthony M. Bloch

We consider the dynamical evolution of two planets orbiting in the vicinity of a first order mean motion reso- nance while simultaneously undergoing eccentricity damping and convergent migration. Following Goldreich & Schlichting (2014), we…

地球与行星天体物理 · 物理学 2015-09-23 Katherine M. Deck , Konstantin Batygin

Many multi-planet systems have been discovered in recent years. Some of them are in mean-motion resonances (MMR). Planet formation theory was successful in explaining the formation of 2:1, 3:1 and other low resonances as a result of…

地球与行星天体物理 · 物理学 2014-11-20 Hanno Rein , John C. B. Papaloizou

The differential migration of two planets due to planet-disk interaction can result in capture into the 2:1 eccentricity-type mean-motion resonances. Both the sequence of 2:1 eccentricity resonances that the system is driven through by…

地球与行星天体物理 · 物理学 2015-05-13 Man Hoi Lee , Edward W. Thommes

Planets undergoing convergent migration can be captured into mean-motion resonance (MMR), in which the planets' periods are related by integer ratios. The dynamics of MMR are typically considered in isolation, including only the forces…

地球与行星天体物理 · 物理学 2025-05-16 JT Laune , Dong Lai

The statistical results of transiting planets show that there are two peaks around 1.5 and 2.0 in the distribution of orbital period ratios. A large number of planet pairs are found near the exact location of mean motion resonances (MMRs).…

地球与行星天体物理 · 物理学 2021-01-27 Su Wang , D. N. C. Lin , Xiaochen Zheng , Jianghui Ji

The theory of Type~I migration has been widely used in many studies. Transiting multi-planet systems offer us the opportunity to examine the consistency between observation and theory, especially for those systems harbouring planets in Mean…

地球与行星天体物理 · 物理学 2023-04-19 Shuo Huang , Chris Ormel

Type-I disk migration can form a chain of planets engaged in first-order mean-motion resonances (MMRs) parked at the disk inner edge. However, while second- or even third-order resonances were deemed unlikely due to their weaker strength,…

地球与行星天体物理 · 物理学 2025-12-30 Finnegan Keller , Fei Dai , Wenrui Xu

Mean-motion resonances (MMRs) are likely to play an important role both during and after the lifetime of a protostellar gas disk. We study the dynamical evolution and stability of planetary systems containing two giant planets on circular…

天体物理学 · 物理学 2009-06-23 Aaron T. Lee , Edward W. Thommes , Frederic A. Rasio

We investigate the condition for capture into first-order mean motion resonances using numerical simulations with a wide range of various parameters. In particular, we focus on deriving the critical migration timescale for capture into the…

地球与行星天体物理 · 物理学 2015-06-16 Masahiro Ogihara , Hiroshi Kobayashi
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