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Related papers: Magnetospheric Accretion as a Source of H$\alpha$ …

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We review the present knowledge of disk accretion in young low mass stars, and in particular, the mass accretion rate and its evolution with time. The methods used to obtain mass accretion rates from ultraviolet excesses and emission lines…

Astrophysics · Physics 2007-05-23 Nuria Calvet , Lee Hartmann , Stephen E. Strom

A key scientific goal of exoplanet surveys is to characterize the underlying population of planets in the local galaxy. In particular, the properties of accreting protoplanets can inform the rates and physical processes of planet formation.…

Earth and Planetary Astrophysics · Physics 2025-04-25 Cailin Plunkett , Katherine B. Follette , Gabriel-Dominique Marleau , Eric Nielsen

Accretion onto Classical T Tauri stars is thought to take place through the action of magnetospheric processes, with gas in the inner disk being channeled onto the star's surface by the stellar magnetic field lines. Young stars are known to…

Solar and Stellar Astrophysics · Physics 2017-04-05 Connor Robinson , James Owen , Catherine Espaillat , Fred Adams

We have measured the present accretion rate of roughly 800 low-mass (~1-1.4 Mo) pre-Main Sequence stars in the field of Supernova 1987A in the Large Magellanic Cloud (LMC, Z~0.3 Zo). It is the first time that this fundamental parameter for…

Astrophysics · Physics 2009-11-10 Martino Romaniello , Massimo Robberto , Nino Panagia

Mass accretion rate determinations are fundamental for an understanding of the evolution of pre-main sequence star circumstellar disks. Magnetospheric accretion models are used to derive values of the mass accretion rates in objects of very…

Astrophysics · Physics 2009-11-11 T. Gatti , L. Testi , A. Natta , S. Randich , J. Muzerolle

We calculate the emission of protoplanetary disks threaded by a poloidal magnetic field and irradiated by the central star. The radial structure of these disks was studied by Shu and collaborators and the vertical structure was studied by…

Solar and Stellar Astrophysics · Physics 2017-11-22 C. Tapia , S. Lizano

The PDS 70 system has been subject to many studies in the past year following the discovery of two accreting planets in the gap of its circumstellar disk. Nevertheless, the mass accretion rate onto the star is still not well known. Here we…

The formation timescale and final architecture of exoplanetary systems are closely related to the properties of the molecular disks from which they form. Observations of the spatial distribution and lifetime of the molecular gas at…

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…

It has been asserted that the primary star in the HD 189733 system steadily accretes evaporated exospheric gases from its ``hot Jupiter'' companion, rather like a T Tauri star accreting from a disk. We conduct statistical and periodogram…

Solar and Stellar Astrophysics · Physics 2020-01-08 Matthew Route , Leslie W. Looney

Aims: We want to detect and quantify observables related to accretion processes occurring locally in circumstellar disks, which could be attributed to young forming planets. We focus on objects known to host protoplanet candidates and/or…

We studied the properties of the young stellar populations in the NGC 299 cluster in the Small Magellanic Cloud using observations obtained with the Hubble Space Telescope in the $V, I$, and $H\alpha$ bands. We identified 250 stars with…

Astrophysics of Galaxies · Physics 2023-07-26 Marissa Vlasblom , Guido De Marchi

Context. Classical T Tauri stars (cTTs) are pre-main sequence stars surrounded by an accretion disk. They host a strong magnetic field, and both magnetospheric accretion and ejection processes develop as the young magnetic star interacts…

Solar and Stellar Astrophysics · Physics 2020-10-14 K. Pouilly , J. Bouvier , E. Alecian , S. H. P. Alencar , A. -M. Cody , J. -F. Donati , K. Grankin , G. A. J. Hussain , L. Rebull , C. P. Folsom

Variability in emission lines is a characteristic feature in young stars and can be used as a tool to study the physics of the accretion process. Here we present a study of H{\alpha} variability in 15 T Tauri and Herbig Ae stars (K7-B2)…

Solar and Stellar Astrophysics · Physics 2015-06-19 Gráinne Costigan , Jorick S. Vink , Aleks Scholz , Tom Ray , Leonardo Testi

PDS 70b is a recently discovered and directly imaged exoplanet within the wide ($\gtrsim$40 au) cavity around PDS 70 (Keppler et al. 2018, M\"uller et al. 2018). Ongoing accretion onto the central star suggests that accretion onto PDS 70b…

Low-resolution spectra from 3000-9000 AA of young low-mass stars and brown dwarfs were obtained with LRIS on Keck I. The excess UV and optical emission arising in the Balmer and Paschen continua yields mass accretion rates ranging from…

Astrophysics · Physics 2009-06-23 Gregory J. Herczeg , Lynne A. Hillenbrand

First evidences of IR excess and disk mass accretion (strong H$\alpha$ emission) around brown dwarfs seem to indicate the existence of circumstellar disks around these sub-stellar objects. Nothing is known at the present time about outflows…

Astrophysics · Physics 2009-11-10 E. Masciadri , A. C. Raga

Context. Intrinsic H$\alpha$ emission can be advantageously used to detect substellar companions because it improves contrasts in direct imaging. Characterising this emission from accreting exoplanets allows for the testing of planet…

We use high time cadence, high spectral resolution optical observations to detect excess H-alpha emission from the 2 - 3 Myr old weak lined T Tauri star PTFO8-8695. This excess emission appears to move in velocity as expected if it were…

The accretion process in young stellar objects (YSOs) is fundamental to the formation of stellar systems. This process governs the star's mass assembly, the transfer of angular momentum, and the shaping of the protoplanetary disc, thereby…

Solar and Stellar Astrophysics · Physics 2026-04-01 K. Pouilly , M. Audard