English
Related papers

Related papers: Long-Term Stability of Horseshoe Orbits

200 papers

We investigate the long-term dynamical survival of Earth co-orbital asteroids, focusing on near-circular, near-planar orbits which existing studies suggest are the most stable. Through numerical integration of test particles we show that…

Earth and Planetary Astrophysics · Physics 2021-09-01 Apostolos A. Christou , Nikolaos Georgakarakos

In co-orbital planetary systems, two or more planets share the same orbit around their star. Here we test the dynamical stability of co-orbital rings of planets perturbed by outside forces. We test two setups: i) 'stationary' rings of…

Earth and Planetary Astrophysics · Physics 2023-05-10 Sean N. Raymond , Dimitri Veras , Matthew S. Clement , Andre Izidoro , David Kipping , Victoria Meadows

Most co-orbital objects in the Solar system are thought to follow tadpole-type orbits, behaving as Trojans. However, most of Earth's identified co-orbitals are moving along horseshoe-type orbits. The current tally of minor bodies considered…

Earth and Planetary Astrophysics · Physics 2020-07-08 Murat Kaplan , Sergen Cengiz

Co-orbital systems contain two or more bodies sharing the same orbit around a planet or star. The best-known flavors of co-orbital systems are tadpoles (in which two bodies' angular separations oscillate about the L4/L5 Lagrange points…

Earth and Planetary Astrophysics · Physics 2023-04-20 Sean N. Raymond , Dimitri Veras , Matthew S. Clement , Andre Izidoro , David Kipping , Victoria Meadows

Jovian co-orbitals share Jupiter's orbit in 1:1 mean motion resonance. This includes $>$10,000 so-called Trojan asteroids surrounding the leading (L4) and trailing (L5) Lagrange points, viewed as stable groups dating back to planet…

Earth and Planetary Astrophysics · Physics 2023-12-12 Sarah Greenstreet , Brett Gladman , Mario Juric

Although the search for extra-solar co-orbital bodies has not had success so far, it is believed that they must be as common as they are in the Solar System. Co-orbital systems have been widely studied, and there are several works on…

Earth and Planetary Astrophysics · Physics 2021-01-13 L. Liberato , O. Winter

It has recently been suggested that the eclipsing polar HU Aquarii is host to at least two giant planets. We have performed highly detailed dynamical analysis of the orbits of those planets and show that the proposed system is highly…

Earth and Planetary Astrophysics · Physics 2015-05-28 J. Horner , J. P. Marshall , Robert A. Wittenmyer , C. G. Tinney

We conduct a systematic survey of the regions in which distant satellites can orbit stably around the four giant planets in the solar system, using orbital integrations of up to $10^9$ yr. In contrast to previous investigations, we use a…

Astrophysics · Physics 2009-11-13 Yue Shen , Scott Tremaine

Previous work has demonstrated orbital stability for 100 Myr of initially near-circular and coplanar small bodies in a region termed the 'Earth-Mars belt' from 1.08 au $< a <$ 1.28 au. Via numerical integration of 3000 particles, we studied…

Earth and Planetary Astrophysics · Physics 2020-10-14 Yukun Huang , Brett Gladman

Long-term instability in multi-planet exosystems is a crucial consideration when confirming putative candidates, analyzing exoplanet populations, constraining the age of exosystems, and identifying the sources of white dwarf pollution. Two…

Earth and Planetary Astrophysics · Physics 2015-06-16 Dimitri Veras , Alexander J. Mustill

Ensembles of in-plane and inclined orbits in the vicinity of the Lagrange points of the terrestrial planets are integrated for up to 100 million years. The integrations incorporate the gravitational effects of Sun and the eight planets…

Astrophysics · Physics 2009-10-31 S. A. Tabachnik , N. W. Evans

HR 8799 is a star accompanied by four massive planets on wide orbits. The observed planetary configuration has been shown to be unstable on a timescale much shorter than the estimated age of the system (~ 30 Myr) unless the planets are…

Earth and Planetary Astrophysics · Physics 2016-08-24 Ylva Gotberg , Melvyn B. Davies , Alexander Mustill , Anders Johansen , Ross P. Church

Despite the existence of co-orbital bodies in the solar system, and the prediction of the formation of co-orbital planets by planetary system formation models, no co-orbital exoplanets (also called trojans) have been detected thus far. Here…

Searching for the non-Trojan Jupiter co-orbitals we have numerically integrated orbits of 3\,160 asteroids and 24 comets discovered by October 2010 and situated within and close to the planet co-orbital region. Using this sample we have…

Earth and Planetary Astrophysics · Physics 2012-06-05 Paweł Wajer , Małgorzata Królikowska

We present a dynamical investigation of a newly found asteroid, 2010 SO16, and the discovery that it is a horseshoe companion of the Earth. The object's absolute magnitude (H=20.7) makes this the largest object of its type known to-date. By…

Earth and Planetary Astrophysics · Physics 2015-05-27 Apostolos A. Christou , David J. Asher

While not detected yet, pairs of exoplanets in the 1:1 mean motion resonance probably exist. Low eccentricity, near-planar orbits, which in the comoving frame follow the horseshoe trajectories, are one of the possible stable configurations.…

Earth and Planetary Astrophysics · Physics 2015-06-19 David Vokrouhlicky , David Nesvorny

The only discovery of Earth Trojan 2010 TK$_7$ and the subsequent launch of OSIRIS-REx motive us to investigate the stability around the triangular Lagrange points $L_4$ and $L_5$ of the Earth. In this paper we present detailed dynamical…

Earth and Planetary Astrophysics · Physics 2019-02-06 Lei Zhou , Yang-Bo Xu , Li-Yong Zhou , Rudolf Dvorak , Jian Li

In previous hydrodynamical simulations, we found a mechanism for nearly circular binary stars, like Kepler-413, to trap two planets in a stable 1:1 resonance. Therefore, the stability of coorbital configurations becomes a relevant question…

Earth and Planetary Astrophysics · Physics 2023-12-06 Stefan Adelbert , Anna B. T. Penzlin , Christoph M. Schäfer , Wilhelm Kley , Billy Quarles , Rafael Sfair

We investigate the dynamical stability of potential satellites orbiting the seven planets of the \texttt{TRAPPIST-1} system using a suite of $N$-body simulations. For each planet, we show that moons can remain stable from the Roche limit…

Earth and Planetary Astrophysics · Physics 2025-12-23 Shubham Dey , Sean N. Raymond

We find an interesting fact that fictitious retrograde co-orbitals of Saturn, or small bodies inside the retrograde 1:1 resonance with Saturn, are highly unstable in our numerical simulations. It is shown that in the presence of Jupiter,…

Earth and Planetary Astrophysics · Physics 2019-07-31 Yukun Huang , Miao Li , Junfeng Li , Shengping Gong
‹ Prev 1 2 3 10 Next ›