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相关论文: Theory of Exozodi Sources and Dust Evolution

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An infrared excess over the stellar photospheric emission of main-sequence stars has been found in interferometric surveys, commonly attributed to the presence of hot exozodiacal dust (HEZD). While submicrometer-sized grains in close…

地球与行星天体物理 · 物理学 2023-10-18 T. A. Stuber , F. Kirchschlager , T. D. Pearce , S. Ertel , A. V. Krivov , S. Wolf

Recent interferometric surveys of nearby main-sequence stars show a faint but significant near-infrared excess in roughly two dozen systems, i.$\,$e. around $10\,\%$ to $30\,\%$ of stars surveyed. This excess is attributed to dust located…

太阳与恒星天体物理 · 物理学 2017-02-01 Florian Kirchschlager , Sebastian Wolf , Alexander V. Krivov , Harald Mutschke , Robert Brunngräber

There is currently debate over whether the dust content of planetary systems is stochastically regenerated or originates in planetesimal belts evolving in steady state. In this paper a simple model for the steady state evolution of debris…

天体物理学 · 物理学 2009-01-19 M. C. Wyatt , R. Smith , J. S. Greaves , C. A. Beichman , G. Bryden , C. M. Lisse

(abridged) Context. The origin of hot exozodiacal dust and its connection with outer dust reservoirs remains unclear. Aims. We aim to explore the possible connection between hot exozodiacal dust and warm dust reservoirs (> 100 K) in…

When observing an extrasolar planetary system, the most luminous component after the star itself is generally the light scattered and/or thermally emitted by a population of micron-sized dust grains. These grains are expected to be…

太阳与恒星天体物理 · 物理学 2015-03-17 O. Absil , C. Eiroa , J. -C. Augereau , C. A. Beichman , W. C. Danchi , D. Defrère , M. Fridlund , A. Roberge

(Abridged) Dust is expected to be ubiquitous in extrasolar planetary systems owing to the dynamical activity of minor bodies. Inner dust populations are, however, still poorly known because of the high contrast and small angular separation…

[Abridged] Debris disks are extrasolar analogs to the solar system planetesimal belts. The star Fomalhaut harbors a cold debris belt at 140 AU as well as evidence of a warm dust component, which is suspected of being a bright analog to the…

Context. Detecting and characterizing circumstellar dust is a way to study the architecture and evolution of planetary systems. Cold dust in debris disks only traces the outer regions. Warm and hot exozodiacal dust needs to be studied in…

Debris disks are the dust disks found around ~20% of nearby main sequence stars in far-IR surveys. They can be considered as descendants of protoplanetary disks or components of planetary systems, providing valuable information on…

地球与行星天体物理 · 物理学 2018-12-05 Mark C. Wyatt

Habitable zone dust levels are a key unknown that must be understood to ensure the success of future space missions to image Earth analogues around nearby stars. Current detection limits are several orders of magnitude above the level of…

Observing Earth-like exoplanets orbiting within the habitable zone of Sun-like stars and studying their atmospheres in reflected starlight requires contrasts of $\sim1\mathrm{e}{-10}$ in the visible. At such high contrast, starlight…

地球与行星天体物理 · 物理学 2022-11-09 Jens Kammerer , Christopher C. Stark , Kevin J. Ludwick , Roser Juanola-Parramon , Bijan Nemati

Hot exozodiacal dust (HEZD) found around main-sequence stars through interferometric observations in the photometric bands H to L is located close to the dust sublimation radius, potentially at orbital radii comparable to those of close-in…

地球与行星天体物理 · 物理学 2023-09-27 Kevin Ollmann , Sebastian Wolf , Moritz Lietzow , Thomas A. Stuber

Luminosity bursts in young FU Orionis-type stars warm up the surrounding disks of gas and dust, thus inflicting changes on their morphological and chemical composition. In this work, we aim at studying the effects that such bursts may have…

This tutorial is an introduction to observational studies of dust transport and evolution in protoplanetary disks. Spatially resolved observations of disks at multiple wavelengths can allow to infer the distribution of various dust grains…

太阳与恒星天体物理 · 物理学 2025-09-16 Marion Villenave

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,…

天体物理学 · 物理学 2007-07-10 M. Kuchner , C. Stark , O. Absil , J. -C. Augereau , P. Thebault

In this work, we develop a rocky planet interior model and use it to investigate the evolution of catastrophically evaporating rocky exoplanets. These planets, detected through the dust tails produced by evaporative outflows from their…

地球与行星天体物理 · 物理学 2024-01-24 Alfred Curry , Richard Booth , James E. Owen , Subhanjoy Mohanty

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…

地球与行星天体物理 · 物理学 2018-06-13 Sebastian Marino , Amy Bonsor , Mark C. Wyatt , Quentin Kral

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…

地球与行星天体物理 · 物理学 2016-11-08 Virginie Faramaz , Steve Ertel , Mark Booth , Jorge Cuadra , Charlotte Simmonds

Dust-obscured star formation has dominated the cosmic history of star formation since z = 4. However, the recent finding of significant amount of dust in galaxies out to z = 8 has opened the new frontier of investigating the origin of dust…

星系天体物理 · 物理学 2024-02-01 Raffaella Schneider , Roberto Maiolino

Extensive photometric stellar surveys show that many main sequence stars show emission at infrared and longer wavelengths that is in excess of the stellar photosphere; this emission is thought to arise from circumstellar dust. The presence…

地球与行星天体物理 · 物理学 2015-06-04 Amaya Moro-Martin