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Related papers: Why are (almost) all the protostellar outflows ali…

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During the early phases of low-mass star formation, episodic accretion causes the ejection of high-velocity outflow bullets, which carry a fossil record of the driving protostar's accretion history. We present 44 SPH simulations of…

Solar and Stellar Astrophysics · Physics 2022-01-11 P. F. Rohde , S. Walch , D. Seifried , A. P. Whitworth , S. D. Clarke

The protostellar outflows have indispensable role in the formation of single stars, because they carry off the excess angular momentum from the centre of the shrinking gas cloud, and permits further collapse to form a star. On the other…

Solar and Stellar Astrophysics · Physics 2015-05-13 Masahiro N. Machida , Shu-ichiro Inutsuka , Tomoaki Matsumoto

Although most young massive stars appear to be part of multiple systems, it is poorly understood how this multiplicity influences the formation of massive stars. The high-mass star-forming region W3 IRS5 is a prime example of a young…

Astrophysics · Physics 2009-11-13 J. A. Rodón , H. Beuther , T. Megeath , F. F. S. van der Tak

Eruptive stars are a class of young stellar objects that show an abrupt increase in their luminosity. These burst-like episodes are thought to dominate the stellar accretion process during the class 0/class I stage. We present an overview…

Solar and Stellar Astrophysics · Physics 2024-03-20 A. Zurlo , P. Weber , S. Pérez , L. Cieza , C. Ginski , R. G. van Holstein , D. Principe , A. Garufi , A. Hales , J. Kastner , E. Rigliaco , G. Ruane , M. Benisty , C. Manara

The accretion history of protostars remains widely mysterious even though it represents one of the best ways to understand the protostellar collapse that leads to the formation of stars. Molecular outflows are here used to characterize the…

Astrophysics of Galaxies · Physics 2020-04-15 T. Nony , F. Motte , F. Louvet , A. Plunkett , A. Gusdorf , S. Fechtenbaum , Y. Pouteau , B. Lefloch , S. Bontemps , J. Molet , J. -F. Robitaille

Molecular outflows provide an alternative method of identifying protostellar cores, complementary to recent mid-infrared studies. Continuing our studies of Perseus, we investigate whether all Spitzer-identified protostars, and particularly…

Astrophysics of Galaxies · Physics 2015-05-13 Jennifer Hatchell , Michael M. Dunham

It has been proposed that the magnetic field, pervasive in the ISM, plays an important role in the process of massive star formation. To better understand its impact at the pre and protostellar stages, high-angular resolution observations…

Astrophysics of Galaxies · Physics 2020-09-30 C. Arce-Tord , F. Louvet , P. C. Cortes , F. Motte , C. L. H. Hull , V. J. M. Le Gouellec , G. Garay , T. Nony , P. Didelon , L. Bronfman

Massive star formation is associated with energetic processes that may influence the physics and chemistry of parental molecular clouds and impact galaxy evolution. The high-mass protostar DR21 Main in Cygnus X possesses one of the largest…

Young A-type stars in the pre--main-sequence (PMS) evolutionary phase are particularly interesting objects since they cover the mass range (1.5-4 solar ma sses) which is most sensitive to the internal conditions inherited during the…

Astrophysics · Physics 2009-11-10 Marcella Marconi , Francesco Palla

We made deep NIR imaging polarimetry toward the Serpens cloud core. The polarization vector maps enable us to newly detect 24 small IR reflection nebulae with YSOs. Polarization measurements of NIR point sources indicate an hourglass-shaped…

The Serpens filament, a prominent elongated structure in a relatively nearby molecular cloud, is believed to be at an early evolutionary stage, so studying its physical and chemical properties can shed light on filament formation and early…

Astrophysics of Galaxies · Physics 2021-02-24 Y. Gong , A. Belloche , F. J. Du , K. M. Menten , C. Henkel , G. X. Li , F. Wyrowski , R. Q. Mao

The Serpens South infrared dark cloud consists of several filamentary ridges, some of which fragment into dense clumps. On the basis of CCS ($J_N=4_3-3_2$), HC$_3$N ($J=5-4$), N$_2$H$^+$ ($J=1-0$), and SiO ($J=2-1, v=0$) observations, we…

We imaged the molecular outflows towards the cluster of high-mass young stellar objects G24.78+0.08 at high-angular resolution using SiO emission, which is considered the classical tracer of protostellar jets. We performed SiO observations…

Solar and Stellar Astrophysics · Physics 2015-06-12 C. Codella , M. T. Beltran , R. Cesaroni , L. Moscadelli , R. Neri , M. Vasta , Q. Zhang

One puzzle in understanding how stars form in clusters is the source of mass -- is all of the mass in place before the first stars are born, or is there an extended period when the cluster accretes material which can continuously fuel the…

Astrophysics of Galaxies · Physics 2015-06-12 Helen Kirk , Philip C. Myers , Tyler L. Bourke , Robert A. Gutermuth , Abigail Hedden , Grant W. Wilson

We investigate the formation of circumstellar disks and outflows subsequent to the collapse of molecular cloud cores with the magnetic field and turbulence. Numerical simulations are performed by using an adaptive mesh refinement to follow…

Solar and Stellar Astrophysics · Physics 2017-04-26 Tomoaki Matsumoto , Masahiro N. Machida , Shu-ichiro Inutsuka

Spectroscopic observations of stars in young open clusters have revealed evidence for a dichotomous distribution of stellar rotational velocities, with 10-30% of stars rotating slowly and the remaining 70-90% rotating fairly rapidly. At the…

Multiplicity and clustering of young pre-main sequence stars appear as critical clues to constrain the star formation process. Taurus is the archetypical example of the most quiescent star forming regions that may still retain primeval…

Solar and Stellar Astrophysics · Physics 2018-12-05 Isabelle Joncour , Gaspard Duchêne , Estelle Moraux and , Frédérique Motte