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A numerical simulation of the Oort cloud is used to explain the observed orbital distributions and numbers of Jupiter-family and Halley-type short-period comets. Comets are given initial orbits with perihelion distances between 5 and 36 AU,…

地球与行星天体物理 · 物理学 2014-02-07 V. V. Emel'yanenko , D. J. Asher , M. E. Bailey

The short period Jupiter family comets (JFCs) are thought to originate in the Kuiper Belt; specifically, a dynamical subclass of the Kuiper Belt known as the `scattered disk' is argued to be the dominant source of JFCs. However, the best…

天体物理学 · 物理学 2009-11-13 Kathryn Volk , Renu Malhotra

Rotational spin-up due to outgassing of comet nuclei has been identified as a possible mechanism for considerable mass-loss and splitting. We report a search for spin changes for three large Jupiter-family comets (JFCs): 14P/Wolf,…

地球与行星天体物理 · 物理学 2018-06-27 Rosita Kokotanekova , Colin Snodgrass , Pedro Lacerda , Simon F. Green , Plamen Nikolov , Tanyu Bonev

Jupiter family comets contribute a significant amount of debris to near-Earth space. However, telescopic observations of these objects seem to suggest they have short physical lifetimes. If this is true, the material generated will also be…

Past and future dynamical evolution of all 64 long period comets having 1/aori< 1\times10-4 au-1 and qosc > 3.0 au and discovered after 1970 is studied. For all of them we obtained a new, homogeneous set of osculating orbits, including 15…

地球与行星天体物理 · 物理学 2015-05-27 Piotr A. Dybczyński , Małgorzata Królikowska

The Centaurs are a population of small, planet-crossing objects in the outer solar system. They are dynamically short-lived and represent the transition population between the Kuiper belt and the Jupiter family short-period comets.…

地球与行星天体物理 · 物理学 2015-06-12 Kathryn Volk , Renu Malhotra

It has long been hypothesised that the Jupiter-family comets (JFCs) come from the scattered disc, an unstable planetesimal population beyond Neptune. This viewpoint has been widely accepted, but a few issues remain, the most prominent of…

地球与行星天体物理 · 物理学 2015-06-23 R. Brasser , J. -H. Wang

Jupiter's core is generally assumed to have formed beyond the snow line. Here we consider an alternative scenario, that Jupiter's core may have accumulated in the innermost parts of the protoplanetary disk. A growing body of research…

地球与行星天体物理 · 物理学 2016-03-23 Sean N. Raymond , Andre Izidoro , Bertram Bitsch , Seth A. Jacobson

We estimated the rate of comet and asteroid collisions with the terrestrial planets by calculating the orbits of 13000 Jupiter-crossing objects (JCOs) and 1300 resonant asteroids and computing the probabilities of collisions based on…

天体物理学 · 物理学 2007-05-23 S. I. Ipatov , J. C. Mather

We present an analysis of comet activity based on the Spitzer Space Telescope component of the Survey of the Ensemble Physical Properties of Cometary Nuclei. We show that the survey is well suited to measuring the activity of Jupiter-family…

We review the current state of knowledge of the long-term evolution of the small bodies that give rise to comets and exocomets, as well as their reservoirs. The active cometary phase is only transitory, and bodies that become comets pass…

Radio observations from decimetric to submillimetric wavelengths are now a basic tool for the investigation of comets. Spectroscopic observations allow us i) to monitor the gas production rate of the comets, by directly observing the water…

天体物理学 · 物理学 2015-05-13 J. Crovisier , N. Biver , D. Bockelée-Morvan , P. Colom

We examine the dynamics of small bodies in orbits similar to that of comet 29P/Schwassmann-Wachmann 1, i.e. near-circular orbits between Jupiter and Saturn. As of late 2019, there are 14 other known bodies in this region that lie in similar…

地球与行星天体物理 · 物理学 2021-02-17 Andrew C. Roberts , Marco A. Muñoz-Gutiérrez

Centaurs--icy bodies orbiting beyond Jupiter and interior to Neptune--are believed to be dynamically related to Jupiter Family Comets (JFCs), which have aphelia near Jupiter's orbit and perihelia in the inner Solar System. Previous…

地球与行星天体物理 · 物理学 2019-10-23 Kevin R. Grazier , Jonathan Horner , Julie C. Castillo-Rogez

The orbital evolution of about 20000 Jupiter-crossing objects and 1500 resonant asteroids under the gravitational influence of planets was investigated. The rate of their collisions with the terrestrial planets was estimated by computing…

天体物理学 · 物理学 2010-12-01 S. I. Ipatov , J. C. Mather

Samarasinha & Mueller (2013) related changes of cometary rotation to other physical parameters for four Jupiter family comets defining a parameter $X$, which is approximately constant within a factor of two irrespective of the active…

地球与行星天体物理 · 物理学 2018-08-29 Beatrice E. A. Mueller , Nalin H. Samarasinha

We present the results of "snapshot" numerical integrations of test particles representing comet-like and asteroid-like objects in the inner solar system aimed at investigating the short-term dynamical evolution of objects close to the…

地球与行星天体物理 · 物理学 2016-05-25 Henry H. Hsieh , Nader Haghighipour

We explore the long-term evolution of a bias-free orbital representation of the cometary nuclei (with diameters above 2 km) of the Kuiper belt, using the so-called L7 synthetic model from CFEPS, which consists of three dynamical…

地球与行星天体物理 · 物理学 2019-10-23 Marco A. Muñoz-Gutiérrez , Antonio Peimbert , Bárbara Pichardo , Matthew J. Lehner , Shiang-Yu Wang

Context. Jupiter-family comets (JFCs), which originate from the Kuiper belt and scattered disk, exhibit low-inclination and chaotic trajectories due to close encounters with Jupiter. Despite their typically short incursions into the inner…

地球与行星天体物理 · 物理学 2024-10-01 P. M. Shober , G. Tancredi , J. Vaubaillon , H. A. R. Devillepoix , S. Deam , S. Anghel , E. K. Sansom , F. Colas , S. Martino

A new classification scheme is introduced for comet-like bodies in the Solar system. It covers the traditional comets as well as the Centaurs and Edgeworth-Kuiper belt objects. At low inclinations, close encounters with planets often result…

天体物理学 · 物理学 2009-11-07 J. Horner , N. W. Evans , M. E. Bailey , D. J. Asher
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