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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

High levels of exozodiacal dust have been observed in the inner regions of a large fraction of main sequence stars. Given the short lifetime of the observed small dust grains, these 'exozodis' are difficult to explain, especially for old…

Earth and Planetary Astrophysics · Physics 2015-06-19 Amy Bonsor , Sean N. Raymond , Jean-Charles Augereau , Chris W. Ormel

Exocomets scattered by planets have been invoked to explain observations in multiple contexts, including the frequently found near- and mid-infrared excess around nearby stars arising from exozodiacal dust. Here we investigate how the…

Earth and Planetary Astrophysics · Physics 2018-06-13 Sebastian Marino , Amy Bonsor , Mark C. Wyatt , Quentin Kral

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

Detecting Earth-like exoplanets in direct images of nearby Sun-like systems brings a unique set of challenges that must be addressed in the early phases of designing a space-based direct imaging mission. In particular, these systems may…

Earth and Planetary Astrophysics · Physics 2023-09-26 Miles H. Currie , Christopher C. Stark , Jens Kammerer , Roser Juanola-Parramon , Victoria S. Meadows

Excess emission, associated with warm, dust belts, commonly known as exozodis, has been observed around a third of nearby stars. The high levels of dust required to explain the observations are not generally consistent with steady-state…

Earth and Planetary Astrophysics · Physics 2015-06-16 Amy Bonsor , Sean Raymond , Jean-Charles Augereau

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

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…

Future direct observations of extrasolar Earth-sized planets in the habitable zone could be hampered by a worrisome source of noise, starlight-reflecting exozodiacal dust. Mid-infrared surveys are currently underway to constrain the amount…

Solar and Stellar Astrophysics · Physics 2015-06-23 Christopher C. Stark , Marc J. Kuchner , Andrew Lincowski

Planets embedded within debris disks gravitationally perturb nearby dust and can create clumpy, azimuthally asymmetric circumstellar ring structures that rotate in lock with the planet. The Earth creates one such structure in the solar…

Solar and Stellar Astrophysics · Physics 2015-05-30 Christopher C. Stark

Exo-zodiacal dust, exozodi for short, is warm (~300K) or hot (up to ~2000K) dust found in the inner regions of planetary systems around main sequence stars. In analogy to our own zodiacal dust, it may be located in or near the habitable…

Earth and Planetary Astrophysics · Physics 2018-07-24 S. Ertel , O. Absil , D. Defrère , J. -C. Augereau , B. Mennesson

Models of the zodiacal cloud's thermal emission and sporadic meteoroids suggest Jupiter-family comets (JFCs) as the dominant source of interplanetary dust. However, comet sublimation is insufficient to sustain the quantity of dust presently…

Earth and Planetary Astrophysics · Physics 2021-12-15 Jessica K. Rigley , Mark C. Wyatt

The SEDs of some nearby stars show mid-infrared excesses from warm habitable zone dust, known as exozodiacal dust. This dust may originate in collisions in a planetesimal belt before being dragged inwards. This paper presents an analytical…

Earth and Planetary Astrophysics · Physics 2020-07-22 Jessica K. Rigley , Mark C. Wyatt

Excess near-infrared emission is detected around one fifth of main-sequence stars, but its nature is a mystery. These excesses are interpreted as thermal emission from populations of small, hot dust very close to their stars (`hot…

In this work we explore a new dynamical path for the delivery of low-inclination comets. In a configuration formed by an interior giant planet and an exterior massive debris disk, where the mass is accounted for by the 50 largest objects in…

Earth and Planetary Astrophysics · Physics 2018-08-29 Marco A. Muñoz-Gutiérrez , Antonio Peimbert , Bárbara Pichardo

Planet-planet scattering is the leading mechanism to explain the large eccentricities of the observed exoplanet population. However, scattering has not been considered important to the production of pairs of planets in mean motion…

Astrophysics · Physics 2009-11-13 Sean N. Raymond , Rory Barnes , Philip J. Armitage , Noel Gorelick

Debris disks or exo-Kuiper belts, detected through their thermal or scattered emission from their dusty components, are ubiquitous around main-sequence stars. Since dust grains are short-lived, their sustained presence is thought to require…

Earth and Planetary Astrophysics · Physics 2024-03-18 Antranik A. Sefilian

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

Exozodiacal dust disks (exozodis) are populations of warm (~300K) or hot (~1000K) dust, located in or interior to a star's habitable zone, detected around ~25% of main-sequence stars as excess emission over the stellar photosphere at mid-…

We show that interaction with a gas disk may produce young planetary systems with closely-spaced orbits, stabilized by mean-motion resonances between neighbors. On longer timescales, after the gas is gone, interaction with a remnant…

Astrophysics · Physics 2009-11-13 Edward W. Thommes , Geoffrey Bryden , Yanqin Wu , Frederic A. Rasio
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