Super-earths and mini-neptunes follow different orbital period–eccentricity relations

Суперземли и мини-нептуны следуют разным соотношениям между орбитальным периодом и эксцентриситетом
Ji‐Lin Zhou, Fei Dai, Ji‐Wei Xie, Ke-Ting Shin, D. An
2026-06-11

dynamical population distinctionmini-neptunesorbital period–eccentricity relationperiod-eccentricity anticorrelationsuper-earths
Many exoplanets have been observed with radius sizes between that of Earth and that of Neptune and are thus classified into two groups: super-earths (SEs) and mini-neptunes (MNs). There are no SEs or MNs in the Solar System, and the mechanisms responsible for their formation and evolution are debated. We investigated the relationships between the orbital period and eccentricity of SEs and MNs using both ensemble statistical analyses and individual measurements. We found that MNs follow an anticorrelation between orbital period and eccentricity, but SEs follow a different relation, possibly in the opposite direction. These trends imply that MNs and SEs are dynamically distinct populations. We suggest that SEs have been more strongly influenced by violent processes such as gravitational scattering and giant impacts, whereas MNs predominantly experienced quiescent secular evolution.
1
Mini-neptunes (MNs) display an anticorrelation between orbital period and eccentricity.
2
Mini-neptunes have likely undergone predominantly quiescent secular evolution rather than violent dynamical events.
3
Super-earths (SEs) follow a different orbital period–eccentricity relation, possibly trending in the opposite direction to MNs.
4
Super-earths have likely experienced stronger violent processes (gravitational scattering, giant impacts) than mini-neptunes.
5
The differing period–eccentricity trends imply MNs and SEs are dynamically distinct populations.

Exoplanets in the radius range between Earth and Neptune (super-Earths and mini-Neptunes)

The relationship between orbital period and eccentricity for super-Earths versus mini-Neptunes and the resulting distinction between their dynamical populations

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2026-06-11
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Ji‐Lin Zhou
Fei Dai
Ji‐Wei Xie
Ke-Ting Shin
D. An
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