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相关论文: Connection between jets, winds and accretion in T …

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Ultraviolet observations of classical T Tauri Stars (cTTSs) have shown that there is a hot (Te ~ 80,000 K) and dense (ne ~ 1e10 cm-3) component associated with the large scale jet. This hot component is formed very close to the base of the…

太阳与恒星天体物理 · 物理学 2015-05-20 Ana I. Gomez de Castro , Brigitta von Rekowski

We present the results of a near-IR spectroscopic analysis on 3 young embedded sources (HH26IRS, HH34IRS and HH46IRS) belonging to different star-forming regions and displaying well developed jet structures. The aim is to investigate the…

天体物理学 · 物理学 2009-11-13 S. Antoniucci , B. Nisini , T. Giannini , D. Lorenzetti

Much is known about the processes driving accretion from protoplanetary disks onto low-mass pre-main-sequence stars (T Tauri stars). Nevertheless, it is unclear how accretion stops. To determine the accretion properties and their relation…

Magnetothermal (MHD) winds and jets originate in a wide range of regions of protoplanetary disks (1-30 au) and are thought to be the primary mechanisms driving accretion onto the central star. One indirect signature of these processes is…

地球与行星天体物理 · 物理学 2025-05-23 A. A. Rota , N. van der Marel , A. Garufi , C. Carrasco-González , E. Macias , I. Pascucci , A. Sellek , L. Testi , A. Isella , S. Facchini

This paper aims at revisit the physical and dynamical properties of the warm atomic gas in the inner disk region of classical T Tauri stars (CTTs) and relate them to the properties of the outer dusty disk. We used the high resolution…

In the framework of the GIARPS High-resolution Observations of T Tauri stars (GHOsT) project, we aim to characterize the atomic and molecular winds in a sample of classical T Tauri stars (CTTs) of the Taurus-Auriga region. We analyzed the…

We present an optical/near-IR survey of 11 variable young stars (EXors and EXor candidates) aimed at deriving and monitoring their accretion properties. About 30 optical and near-infrared spectra ($\Re$ $\sim$ 1500-2000) were collected…

太阳与恒星天体物理 · 物理学 2022-04-27 T. Giannini , A. Giunta , M. Gangi , R. Carini , D. Lorenzetti , S. Antoniucci , A. Caratti o Garatti , L. Cassarà , B. Nisini , A. Rossi , V. Testa , F. Vitali

Classical T Tauri stars (cTTs) accrete from their circumstellar disk. The material falls onto the stellar surface, producing an accretion shock, which generates veiling in a star's spectra. In addition, the shock causes a localized…

太阳与恒星天体物理 · 物理学 2023-09-06 M. Nelissen , A. Natta , P. McGinnis , C. Pittman , C. Delvaux , T. Ray

We analyze high-resolution (dv=<10km/s) optical and infrared spectra covering the [OI] 6300 angstrom and [NeII] 12.81 micron lines from a sample of 31 disks in different evolutionary stages. Following work at optical wavelengths, we use…

We present the analysis of 34 new VLT/X-Shooter spectra of young stellar objects in the Chamaeleon I star forming region, together with four more spectra of stars in Taurus and two in Chamaeleon II. The broad wavelength coverage and…

太阳与恒星天体物理 · 物理学 2016-01-13 C. F. Manara , D. Fedele , G. J. Herczeg , P. Teixeira

The HeII (1640 A) line and the resonance doublet of NV (UV1) provide a good diagnostic tool to constrain the excitation mechanism of hot (Te>40,000K) atmospheric/magnetospheric plasmas in T Tauri stars (TTSs). Making use of the data…

太阳与恒星天体物理 · 物理学 2015-06-16 Ana I Gomez de Castro

(Abridged) We have conducted a study of [NeII] line emission based on a sample of 92 pre-main sequence stars mostly belonging to the infrared Class II, including 13 accreting transition disk objects and 14 objects driving jets and outflows.…

太阳与恒星天体物理 · 物理学 2015-05-19 M. Guedel , F. Lahuis , K. R. Briggs , J. Carr , A. E. Glassgold , Th. Henning , J. R. Najita , R. van Boekel , E. van Dishoeck

We present the results of a variability study of accreting young stellar objects in the Chameleon I star-forming region which is based on ~300 high resolution optical spectra from the multi-object fibre spectrograph FLAMES/GIRAFFE at the…

太阳与恒星天体物理 · 物理学 2015-06-11 G. Costigan , A. Scholz , B. Stelzer , T. Ray , J. S. Vink , S. Mohanty

Classical T Tauri Stars (CTTSs) are highly variable stars that possess gas- and dust-rich disks from which planets form. Much of their variability is driven by mass accretion from the surrounding disk, a process that is still not entirely…

Variability is a defining characteristic of young low-mass stars that are still accreting material from their primordial protoplanetary disk. Here we present the largest \textit{HST} variability study of Classical T Tauri stars (CTTS) to…

太阳与恒星天体物理 · 物理学 2019-04-10 Connor Robinson , Catherine Espaillat

The dependence of the mass accretion rate on the stellar properties is a key constraint for star formation and disk evolution studies. Here we present a study of a sample of stars in the Chamaeleon I star forming region carried out using…

A relation between the mass accretion rate onto the central young star and the mass of the surrounding protoplanetary disk has long been theoretically predicted and observationally sought. For the first time, we have accurately and…

Time-domain spectroscopy of the classical accreting T Tauri star, TW Hya, covering a decade and spanning the far UV to the near-infrared spectral regions can identify the radiation sources, the atmospheric structure produced by…

太阳与恒星天体物理 · 物理学 2015-06-19 A. K. Dupree , N. S. Brickhouse , S. R. Cranmer , P. Berlind , J. Strader , G. H. Smith

Intermediate dispersion spectroscopic observations of 37 Herbig Ae/Be stars reveal that the equivalent widths of their [OI] 6300A and Halpha emission lines, are related to their near-infrared colours in the same fashion as the T-Tauri…

天体物理学 · 物理学 2007-05-23 Myles Corcoran , Thomas P. Ray

Advances in high-resolution imaging have revealed H$\alpha$ emission separated from the host star. It is generally believed that the emission is associated with forming planets in protoplanetary disks. However, the nature of this emission…

地球与行星天体物理 · 物理学 2020-01-08 Thanawuth Thanathibodee , Nuria Calvet , Jaehan Bae , James Muzerolle , Ramiro Franco Hernández