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Related papers: Comet fragmentation as a source of the zodiacal cl…

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The zodiacal cloud is a thick circumsolar disk of small debris particles produced by asteroid collisions and comets. Here, we present a zodiacal cloud model based on the orbital properties and lifetimes of comets and asteroids, and on the…

Earth and Planetary Astrophysics · Physics 2014-11-20 David Nesvorny , Peter Jenniskens , Harold F. Levison , William F. Bottke , David Vokrouhlicky

The solar system is dusty, and would become dustier over time as asteroids collide and comets disintegrate, except that small debris particles in interplanetary space do not last long. They can be ejected from the solar system by Jupiter,…

Earth and Planetary Astrophysics · Physics 2015-05-30 David Nesvorny , Diego Janches , David Vokrouhlicky , Petr Pokorny , William F. Bottke , Peter Jenniskens

Tiny meteoroids entering the Earth's atmosphere and inducing meteor showers have long been thought to originate partly from cometary dust. Together with other dust particles, they form a huge cloud around the Sun, the zodiacal cloud. From…

Earth and Planetary Astrophysics · Physics 2020-05-06 Anny-Chantal Levasseur-Regourd , Clément Baruteau , Jérémie Lasue , Julien Milli , Jean-Baptiste Renard

Comets have been invoked in numerous studies as a potentially important source of dust and gas around stars, but none has studied the thermo-physical evolution, out-gassing rate, and dust ejection of these objects in such stellar systems.…

Earth and Planetary Astrophysics · Physics 2016-04-14 Ulysse Marboeuf , Amy Bonsor , Jean-Charles Augereau

Fractions of asteroidal particles, particles originating beyond Jupiter's orbit (including trans-Neptunian particles), and cometary particles originating inside Jupiter's orbit among zodiacal dust are estimated to be about 1/3 each, with a…

Astrophysics · Physics 2010-11-29 S. I. Ipatov

Grain-grain collisions shape the 3-dimensional size and velocity distribution of the inner Zodiacal Cloud and the impact rates of dust on inner planets, yet they remain the least understood sink of zodiacal dust grains. For the first time,…

Earth and Planetary Astrophysics · Physics 2024-01-26 Petr Pokorny , Althea V. Moorhead , Marc J. Kuchner , Jamey R. Szalay , David M. Malaspina

The solar system's Zodiacal Cloud is visible to the unaided eye, yet the origin of its constituent dust particles is not well understood, with a wide range of proposed divisions between sources in the asteroid belt and Jupiter Family…

The zodiacal cloud is one of the largest structures in the solar system and strongly governed by meteoroid collisions near the Sun. Collisional erosion occurs throughout the zodiacal cloud, yet it is historically difficult to directly…

Earth and Planetary Astrophysics · Physics 2021-04-19 J. R. Szalay , P. Pokorny , D. M. Malaspina , A. Pusack , S. D. Bale , K. Battams , L. C. Gasque , K. Goetz , H. Kruger , D. J. McComas , N. A. Schwadron , P. Strub

The inner Solar System contains a cloud of small (1-100 micron) dust grains created when small bodies-asteroids, comets, and Kuiper belt objects-collide and outgas. This dust cloud, the zodiacal cloud probably has extrasolar analogs,…

Astrophysics · Physics 2007-07-10 M. Kuchner , C. Stark , O. Absil , J. -C. Augereau , P. Thebault

We model the infrared emission from zodiacal dust detected by the IRAS and COBE missions, with the aim of estimating the relative contributions of asteroidal, cometary and interstellar dust to the zodiacal cloud. Our most important result…

Earth and Planetary Astrophysics · Physics 2015-08-03 Michael Rowan-Robinson , Brian May

Using the Moon to occult the Sun, the Clementine spacecraft used its navigation cameras to map the inner zodiacal light at optical wavelengths over elongations of 3-30 degrees from the Sun. This surface brightness map is then used to infer…

Astrophysics · Physics 2009-11-07 J. M. Hahn , H. A. Zook , B. Cooper , B. Sunkara

The simulated Doppler shifts of the solar Mg I Fraunhofer line produced by scattering on the solar light by asteroidal, cometary, and trans-Neptunian dust particles are compared with the shifts obtained by Wisconsin H-Alpha Mapper (WHAM)…

High levels of dust have been detected in the immediate vicinity of many stars, both young and old. A promising scenario to explain the presence of this short-lived dust is that these analogues to the Zodiacal cloud (or exozodis) are…

Earth and Planetary Astrophysics · Physics 2016-11-08 Virginie Faramaz , Steve Ertel , Mark Booth , Jorge Cuadra , Charlotte Simmonds

High levels of exozodiacal dust are observed around a growing number of main sequence stars. The origin of such dust is not clear, given that it has a short lifetime against both collisions and radiative forces. Even a collisional cascade…

Earth and Planetary Astrophysics · Physics 2015-06-11 Amy Bonsor , Jean-Charles Augereau , Philippe Thebault

In this study, we numerically investigated the orbital evolution of cometary dust particles, with special consideration of the initial size frequency distribution (SFD) and different evolutionary tracks according to initial orbit and…

Earth and Planetary Astrophysics · Physics 2018-03-14 Hongu Yang , Masateru Ishiguro

We present simulated observations of the Doppler shifts of the solar Mg I Fraunhofer line scattered by asteroidal, cometary, and trans-Neptunian dust particles. The studies are based on the results of integrations of orbital evolution of…

Astrophysics · Physics 2007-05-23 S. I. Ipatov , A. S. Kutyrev , G. J. Madsen , J. C. Mather , S. H. Moseley , R. J. Reynolds

In part I, using an effective computational approach, we have reconstructed the population of dust sources between Jupiter and Neptune. Here, in part II, we present the results on distribution of dust produced by 157 real sources (100…

Astrophysics · Physics 2007-05-23 Nikolai N. Gor'kavyi , Leonid M. Ozernoy , Tatiana Taidakova

A warm/hot dust component (at temperature $>$ 300K) has been detected around $\sim$ 20% of stars. This component is called "exozodiacal dust" as it presents similarities with the zodiacal dust detected in our Solar System, even though its…

This study investigates the origin of interplanetary dust particles (IDPs) through the optical properties, albedo and spectral gradient, of zodiacal light. The optical properties were compared with those of potential parent bodies in the…

Earth and Planetary Astrophysics · Physics 2015-11-11 Hongu Yang , Masateru Ishiguro

The nucleosynthetic isotope dichotomy between carbonaceous (CC) and non-carbonaceous (NC) meteorites has been interpreted as evidence for spatial separation and the coexistence of two distinct planet-forming reservoirs for several million…

Earth and Planetary Astrophysics · Physics 2023-02-01 Sebastian Markus Stammler , Tim Lichtenberg , Joanna Drążkowska , Tilman Birnstiel
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