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相关论文: Dust Processing in Disks around T Tauri Stars

200 篇论文

We announce the discovery of SST-Lup3-1, a very low mass star close to the brown dwarf boundary in Lupus III with a circum(sub)stellar disk, discovered by the `Cores to Disks' Spitzer Legacy Program from mid-, near-infrared and optical…

Using the Infrared Spectrograph aboard the Spitzer Space Telescope, we observed multiple epochs of 11 actively accreting T Tauri stars in the nearby Taurus-Auriga star forming region. In total, 88 low-resolution mid-infrared spectra were…

太阳与恒星天体物理 · 物理学 2014-11-20 Jeffrey S. Bary , Jarron M. Leisenring , Michael F. Skrutskie

Aims: We search for PAH features towards T Tauri stars and compare them with surveys of Herbig Ae/Be stars. The presence and strength of the PAH features are interpreted with disk radiative transfer models exploring the PAH feature…

We present a high-resolution ($\sim0.''12$, $\sim16$ au, mean sensitivity of $50~\mu$Jy~beam$^{-1}$ at 225 GHz) snapshot survey of 32 protoplanetary disks around young stars with spectral type earlier than M3 in the Taurus star-forming…

We present mid-IR spectroscopy of three T Tauri stars in the young Chamealeon I dark cloud obtained with TIMMI2 on the ESO 3.6m telescope. In these three stars, the silicate emission band at 9.7 micron is prominent. We model it with a…

天体物理学 · 物理学 2009-11-10 G. Meeus , M. Sterzik , J. Bouwman , A. Natta

The dust sublimation walls of disks around T Tauri stars represent a directly observable cross-section through the disk atmosphere and midplane. Their emission properties can probe the grain size distribution and composition of the…

地球与行星天体物理 · 物理学 2015-06-16 M. K. McClure , P. D'Alessio , N. Calvet , C. Espaillat , L. Hartmann , B. Sargent , D. M. Watson , L. Ingleby , J. Hernandez

High-energy irradiation of the circumstellar material might impact the structure and the composition of a protoplanetary disk and hence the process of planet formation. In this paper, we present a study on the possible influence of the…

Aims. In this paper we study the Spitzer and TIMMI2 infrared spectra of post-AGB disc sources, both in the Galaxy and the LMC. Using the observed infrared spectra we determine the mineralogy and dust parameters of the discs, and look for…

太阳与恒星天体物理 · 物理学 2015-05-30 C. Gielen , J. Bouwman , H. Van Winckel , T. Lloyd Evans , P. M. Woods , F. Kemper , M. Marengo , M. Meixner , G. C. Sloan , A. G. G. M. Tielens

The composition of silicate dust in the diffuse interstellar medium and in protoplanetary disks around young stars informs our understanding of the processing and evolution of the dust grains leading up to planet formation. Analysis of the…

太阳与恒星天体物理 · 物理学 2016-10-19 Shane Fogerty , William Forrest , Dan M. Watson , Benjamin A. Sargent , Ingrid Koch

The inner disk of the young star PDS 70 may be a site of rocky planet formation, with two giant planets detected further out. Solids in the inner disk may inform us about the origin of this inner disk water and nature of the dust in the…

We model the process of dust coagulation in protoplanetary disks and calculate how it affects their observational appearance. Our model involves the detailed solution of the coagulation equation at every location in the disk. At regular…

天体物理学 · 物理学 2010-04-06 C. P. Dullemond , C. Dominik

We construct a protostellar disk model that takes into account the combined effect of viscous evolution, photoevaporation and the differential radial motion of dust grains and gas. For T Tauri disks, the lifetimes of dust disks that are…

天体物理学 · 物理学 2009-11-10 Taku Takeuchi , C. J. Clarke , D. N. C. Lin

(Abridged) We attempt to characterize the radial distribution of dust in disks around a sample of young stars from an observational point of view, and, when possible, in a model-independent way, by using parametric laws. We used the IRAM…

星系天体物理 · 物理学 2015-05-27 S. Guilloteau , A. Dutrey , V. Piétu , Y. Boehler

We examine a problem of the dust grains survival in the disk wind in T Tauri stars (TTSs). For consideration we choose the disk wind model described by Garcia et al. (2001), where a gas component of the wind is heated by an ambipolar…

天体物理学 · 物理学 2009-11-13 L. V. Tambovtseva , V. P. Grinin

The last decade has witnessed remarkable advances in the characterization of the (sub-)millimeter emission from planet-forming disks. Instead, the study of the (sub-)centimeter emission has made more limited progress, to the point that only…

We present a Spitzer InfraRed Spectrometer search for 10-36 micron molecular emission from a large sample of protoplanetary disks, including lines from H2O, OH, C2H2, HCN and CO2. This paper describes the sample and data processing and…

地球与行星天体物理 · 物理学 2015-05-19 Klaus M. Pontoppidan , Colette Salyk , Geoffrey A. Blake , Rowin Meijerink , John S. Carr , Joan Najita

The recently recognized class of "transitional disk" systems consists of young starswith optically-thick outer disks but inner disks which are mostly devoid of small dust. Here we introduce a further class of "pre-transitional disks" with…

天体物理学 · 物理学 2009-11-13 C. Espaillat , N. Calvet , P. D'Alessio , J. Hernandez , C. Qi , L. Hartmann , E. Furlan , D. M. Watson

We present our results from a mid-infrared interferometric survey targeted at the planet-forming region in the circumstellar disks around low- and intermediate-mass young stars. Our sample consist of 82 objects, including T Tauri stars,…

太阳与恒星天体物理 · 物理学 2020-02-14 J. Varga , P. Ábrahám , L. Chen , Th. Ratzka , K. É. Gabányi , Á. Kóspál

Although T Tauri is one of the most studied young objects in astronomy, the nature of its circumstellar environment remains elusive due, in part, to the small angular separation of its three components (North-South and South a-b are…

天体物理学 · 物理学 2010-03-26 Andrew Skemer , Laird Close , Philip Hinz , William Hoffmann , Matthew Kenworthy , Douglas Miller

We present Spitzer images of the Taurus Complex (TC) and take advantage of the sensitivity and spatial resolution of the observations to characterize the diffuse IR emission across the cloud. This work highlights evidence of dust evolution…