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Related papers: On the Interferometric Sizes of Young Stellar Obje…

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Information about the inner structure of young stellar objects is crucial for understanding how the central forming stars gain their mass. However, especially for observations of (usually further away) high-mass young stellar objects,…

Solar and Stellar Astrophysics · Physics 2011-11-04 Hendrik Linz , Roman Follert , Paul A. Boley , Roy van Boekel , Bringfried Stecklum , Christoph Leinert , Thomas Henning

We present a compositional analysis of 8-13um spectra of 32 young stellar objects (YSOs). Our sample consists of 5 intermediate-mass stars and 27 low-mass stars. While the spectra and first scientific results have already been published by…

Astrophysics · Physics 2009-11-11 A. Schegerer , S. Wolf , N. V. Voshchinnikov , F. Przygodda , J. E. Kessler-Silacci

Grain growth in circumstellar disks is expected to be the first step towards the formation of planetary systems. There is now evidence for grain growth in several disks around young stars. Radially resolved images of grain growth in…

Astrophysics of Galaxies · Physics 2015-05-19 A. Banzatti , L. Testi , A. Isella , A. Natta , R. Neri , D. J. Wilner

We present multi-wavelengths observations and a radiative transfer model of a newly discovered massive circumstellar disk of gas and dust which is one of the largest disks known today. Seen almost edge-on, the disk is resolved in…

Dusty disks around young stars are formed out of interstellar dust that consists of amorphous, submicrometre grains. Yet the grains found in comets and meteorites, and traced in the spectra of young stars, include large crystalline grains…

Earth and Planetary Astrophysics · Physics 2010-11-02 Dejan Vinkovic

Dust grains in protoplanetary disks are the building blocks of planets. Investigating the dust composition and size, and their variation over time, is crucial for understanding the planet formation process. The PDS 70 disk is so far the…

Earth and Planetary Astrophysics · Physics 2025-01-13 Yao Liu , Dafa Li , Hongchi Wang , Haoran Feng , Min Fang , Fujun Du , Thomas Henning , Giulia Perotti

We have used mid-infrared long-baseline interferometry with MIDI at the VLTI to resolve the circumstellar material around the Herbig Ae star HR 5999, providing the first direct measurement of its angular size, and to derive constraints on…

Astrophysics · Physics 2009-11-11 Thomas Preibisch , Stefan Kraus , Thomas Driebe , Roy van Boekel , Gerd Weigelt

Context : The properties of the inner disks of bright Herbig AeBe stars have been studied with near infrared (NIR) interferometry and high resolution spectroscopy. The continuum and a few molecular gas species have been studied close to the…

Dust grains in the interstellar medium interact with photons across the electromagnetic spectrum. They are generally photon energy converters, absorbing short wavelength radiation and emitting long wavelength radiation. Sixty years ago in…

Astrophysics of Galaxies · Physics 2026-01-19 Yancy L. Shirley , Jeffrey G. Mangum , Desika Narayanan , James Di Francesco

The characterization of gas in the inner disks around young stars is of particular interest because of its connection to planet formation. In order to study the gas in inner disks, we have obtained high-resolution K-band and M-band…

Astrophysics · Physics 2011-02-11 Sean Brittain , Theodore Simon , Joan Najita , Terrence Rettig

Infrared interferometry has fuelled a paradigm shift in our understanding of the dusty structure in the central parsecs of Active Galactic Nuclei (AGN). The dust is now thought to comprise of a hot ($\sim1000\,$K) equatorial disk, some of…

Debris disks are signposts of analogues to small body populations of the Solar System, often however with much higher masses and dust production rates. The disk associated with the nearby star Eta Corvi is especially striking as it shows…

Earth and Planetary Astrophysics · Physics 2016-02-17 J. Lebreton , C. Beichman , G. Bryden , D. Defrère , B. Mennesson , R. Millan-Gabet , A. Boccaletti

The innermost parts of dusty debris disks around main sequence stars are currently poorly known due to the high contrast and small angular separation with their parent stars. Using near-infrared interferometry, we aim to detect the…

The in-situ detection of interstellar dust grains in the Solar System by the dust instruments on-board the Ulysses and Galileo spacecraft as well as the recent measurements of hyperbolic radar meteors give information on the properties of…

Astrophysics · Physics 2015-06-24 M. Landgraf , W. J. Baggaley , E. Grün , H. Krüger , G. Linkert

We examine the ``puffed-up inner disk'' model (Dullemond, Dominik & Natta 2001), proposed for explaining the near-IR excess radiation from Herbig Ae/Be stars. Detailed model computations show that the observed near-IR excess requires more…

Astrophysics · Physics 2009-11-11 Dejan Vinkovic , Zeljko Ivezic , Tomislav Jurkic , Moshe Elitzur

Effects of young stellar clusters on their gas and dust environment are probed using mid-infrared (MIR) wavelengths. The strong MIR [NeIII]/[NeII] ratios (5 to 10) reveal the presence of current massive stars less than 5 Myr. Using MIR line…

Astrophysics · Physics 2007-05-23 Suzanne Madden

We summarize the main results of a mid-IR photometric survey with ISO for a few nearby embedded clusters. The sensitivity and spatial resolution of ISOCAM provided a wonderful tool for studies of the youngest stellar clusters, which are…

Astrophysics · Physics 2007-05-23 Anlaug Amanda Kaas , Sylvain Bontemps

Infrared imaging properties of dusty winds around late-type stars are investigated in detail, employing a self-consistent model that couples the equations of motion and radiative transfer. Because of general scaling properties, the angular…

Astrophysics · Physics 2015-06-24 Zeljko Ivezic , Moshe Elitzur

The quantity of dust in a spiral disk can be estimated using the dust's typical emission or the extinction of a known source. In this paper, we compare two techniques, one based on emission and one on absorption, applied on sections of…

Theoretical models and spectroscopic observations of newborn stars suggest that protoplantary disks have an inner "wall" at a distance set by the disk interaction with the star. Around T Tauri stars, the size of this disk hole is expected…

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