English
Related papers

Related papers: Collisional Evolution of the Inner Zodiacal Cloud

200 papers

Solar Orbiter provides dust detection capability in inner heliosphere, but estimating physical properties of detected dust from the collected data is far from straightforward. First, a physical model for dust collection considering a…

The orbital distributions of dust particles in interplanetary space are inferred from several meteoroid data sets under the constraints imposed by the orbital evolution of the particles due to the planetary gravity and Poynting-Robertson…

Earth and Planetary Astrophysics · Physics 2019-02-11 Valeri V. Dikarev , Eberhard Grün , William J. Baggaley , David P. Galligan , Markus Landgraf , Rüdiger Jehn

We modeled the 3-D structure of the Kuiper Belt dust cloud at four different dust production rates, incorporating both planet-dust interactions and grain-grain collisions using the collisional grooming algorithm. Simulated images of a model…

Earth and Planetary Astrophysics · Physics 2015-05-19 Marc J. Kuchner , Christopher C. Stark

The Oort cloud is thought to be a reservoir of icy planetesimals and the source of long-period comets (LPCs) implanted from the outer Solar System during the time of giant planet formation. The abundance of rocky ice-free bodies is a key…

The zodiacal dust complex, a population of dust and small particles that pervades the Solar System, provides important insight into the formation and dynamics of planets, comets, asteroids, and other bodies. Here we present a new set of…

Earth and Planetary Astrophysics · Physics 2019-10-03 James Ira Thorpe , Jacob Slutsky , John Baker , Tyson Littenberg , Sophie Hourihane , Nicole Pagane , Petr Pokorny , Diego Janches , Michele Armano , Heather Audley , G. Auger , Jonathan Baird , Massimo Bassan , Pierre Binetruy , Michael Born , D. Bortoluzzi , N. Brandt , M. Caleno , A Cavalleri , A Cesarini , A. M. Cruise , K. Danzmann , M. de Deus Silva , R. De Rosa , L. Di Fiore , I. Diepholz , G. Dixon , R. Dolesi , N. Dunbar , L. Ferraioli , V. Ferroni , E. Fitzsimons , R. Flatscher , M. Freschi , C. Garcia Marirrodriga , R. Gerndt , L. Gesa , F. Gibert , D. Giardini , R. Giusteri , A. Grado , C. Grimani , J. Gryzmisch , I. Harrison , G. Heinzel , M. Hewitson , D. Hollington , D. Hoyland , M. Hueller , H. Inchauspe , O. Jennrich , P. Jetzer , B. Johlander , N. Karnesis , B. Kaune , N. Korsakova , C. Killow , J. A. Lobo , I. Lloro , L. Liu , J. P. Lopez-Zaragoza , R. Maarschalkerweerd , D. Mance , V. Martin , L. Martin-Polo , J. Martino , F. Martin-Porqueras , S. Madden , I. Mateos , P. W. McNamara , J. Mendes , L. Mendes , M. Nofarias , S. Paczkowski , M. Perreur-Lloyd , A. Petiteau , P. Pivato , E. Plagnol , P. Prat , U. Ragnit , J. Ramos-Castro , J. Reiche , D. Robertson , H. Rozemeijer , F. Rivas , G. Russano , P. Sarra , A. Schleicher , D. Shaul , C. Soperta , R. Stanga , T. Sumner , D. Texier , M. Trobs , D. Vetrungno , S. Vitale , G. Wanner , H. Ward , P. Wass , D. Wealthy , W. J. Weber , L. Wissel , A. Wittchen , A. Zambotti , C. Zanoni , T. Ziegler , P. Zweifel

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

The Geminids meteoroid stream produces one of the most intense meteor showers at Earth. It is an unusual stream in that its parent body is understood to be an asteroid, (3200) Phaethon, unlike most streams which are formed via ongoing…

Earth and Planetary Astrophysics · Physics 2023-06-21 Wolf Z. Cukier , Jamey R. Szalay

We report several results related to the dynamical evolution of dust produced in the Kuiper Belt (KB). We show that its particle size frequency distribution in space is greatly changed from the distribution at production, as a results of…

Astrophysics · Physics 2009-11-13 Amaya Moro-Martin , Renu Malhotra

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

The ESA meteoroid model predicts impacts of meteoroids in the mass range between $10^{-18}$ to $10^0$ g on spacecraft surfaces. It covers heliocentric distances from 0.3 to 20 AU. Measurements of the dust detector on board the highly…

Astrophysics · Physics 2007-05-23 M. Landgraf , R. Jehn , N. Altobelli , V. Dikarev , E. Grün

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…

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)…

The coagulation of microscopic dust into planetesimals is the first step towards planet formation. The size and shape of the growing aggregates determine the efficiency of this early growth. It has been proposed that fluffy ice aggregates…

Earth and Planetary Astrophysics · Physics 2015-02-04 Sebastiaan Krijt , Chris W. Ormel , Carsten Dominik , Alexander G. G. M. Tielens

We consider the possibility that aeolian (wind blown) processes occur on small, 1 to 100~km diameter, planetesimals when they were embedded in the protosolar nebula. Drag from a headwind within a protostellar disk is sufficiently large to…

Earth and Planetary Astrophysics · Physics 2025-04-29 Alice C. Quillen , Stephen Luniewski , Adam E. Rubinstein , Jeremy Couturier , Rachel Glade , Miki Nakajima

Since the 1980's it has been becoming increasingly clear that the Solar System's irregular satellites are collisionally evolved. We derive a general model for the collisional evolution of an irregular satellite swarm and apply it to the…

Earth and Planetary Astrophysics · Physics 2013-11-07 Grant M. Kennedy , Mark C. Wyatt

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

The zodiacal light is the dominant source of the mid-infrared sky brightness seen from Earth, and exozodiacal light is the dominant emission from planetary and debris systems around other stars. We observed the zodiacal light spectrum with…

Astrophysics · Physics 2009-11-07 William T. Reach , Patrick Morris , Franccois Boulanger , Koryo Okumura

The dynamical evolution of long-period comets (LPCs) and their meteoroid streams is usually described with the Sun as the primary body, but over most of their orbits the Solar System barycenter (SSB) is effectively the orbital focus.…

Earth and Planetary Astrophysics · Physics 2025-04-28 Stuart Pilorz , Peter Jenniskens

The radial structure of debris discs can encode important information about their dynamical and collisional history. In this paper we present a 3-phase analytical model to analyse the collisional evolution of solids in debris discs,…

Exozodiacal dust, warm debris from comets and asteroids in and near the habitable zone of stellar systems, reveals the physical processes that shape planetary systems. Scattered light from this dust is also a source of background flux which…