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Journal ArticleDOI

Evolution of Debris Disks

TLDR
In this article, a review describes the theoretical framework within which debris disk evolution takes place and shows how that framework has been constrained by observations, including infrared photometry of large numbers of debris disks, providing snapshots of the dust present at different evolutionary phases.
Abstract
Circumstellar dust exists around several hundred main sequence stars. For the youngest stars, that dust could be a remnant of the protoplanetary disk. Mostly it is inferred to be continuously replenished through collisions between planetesimals in belts analogous to the Solar System’s asteroid and Kuiper belts, or in collisions between growing protoplanets. The evolution of a star’s debris disk is indicative of the evolution of its planetesimal belts and may be influenced by planet formation processes, which can continue throughout the first gigayear as the planetary system settles to a stable configuration and planets form at large radii. Evidence for that evolution comes from infrared photometry of large numbers of debris disks, providing snapshots of the dust present at different evolutionary phases, as well as from images of debris disk structure. This review describes the theoretical framework within which debris disk evolution takes place and shows how that framework has been constrained by observations.

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Journal ArticleDOI

High-Resolution Broadband Millimeter-Wave Astrophysical Spectrometer with Triple Product Acousto-Optical Processor

TL;DR: In this paper, an advanced conceptual design of a high-bit-rate triple product acousto-optical processor is presented that can be applied in a number of astrophysical problems.
Journal ArticleDOI

Large-scale numerical simulations of star formation put to the test: Comparing synthetic images and actual observations for statistical samples of protostars

TL;DR: In this article, the authors compare synthetic continuum images and SEDs, calculated from large-scale numerical simulations, to observational studies, thereby aiding in both the interpretation of the observations and in testing the fidelity of the simulations.
Journal ArticleDOI

The Statistics of Extended Debris Disks Measured with Gaia and Planck

TL;DR: In this article, a likelihood-based approach was proposed to estimate the fraction of stars hosting disks and the thermal emission from the disks using the data from the Planck CMB survey at 857 and 545 GHz.
Journal ArticleDOI

A Herschel PACS survey of brown dwarfs in IC 2391: limits on primordial and debris disc fractions

TL;DR: In this article, a Herschel PACS survey of 8 brown dwarfs in the IC 2391 cluster was used to determine the brown dwarf disk fraction at ages of ~40-50 Myr.
Journal ArticleDOI

Oort cloud Ecology - II. the chronology of the formation of the Oort cloud

TL;DR: In this article, the authors present a chronology of the formation and early evolution of the Oort cloud, and test the sequence of events by simulating the formation process in subsequent amalgamated steps.
References
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Journal ArticleDOI

Disk Frequencies and Lifetimes in Young Clusters

TL;DR: In this paper, the authors report the results of the first sensitive L-band survey of the intermediate-age (2.5-30 Myr) clusters NGC 2264, NGC 2362, and NGC 1960.
Journal ArticleDOI

Meteorites and the Early Solar System

TL;DR: Chondrite classification, primordial matter composition and early solar system chemical processes, discussing cosmic gas condensation and refractory element fractionation are discussed in this paper, with a focus on early solar systems chemical processes.
Journal ArticleDOI

Origin of the cataclysmic Late Heavy Bombardment period of the terrestrial planets

TL;DR: This model not only naturally explains the Late Heavy Bombardment, but also reproduces the observational constraints of the outer Solar System.
Book

Protostars and Planets V

TL;DR: Protostars and Planets V as mentioned in this paper provides a detailed and up-to-date picture of star and planet formation, including the formation and early evolution of our own solar system.
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