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FU Orionis stars (FUors) are young low-mass eruptive stars that are thought to be accreting at high rates. They could give rise to soft X-ray emission from accretion shocks, but their X-ray properties are largely unknown. We report the…

Astrophysics · Physics 2009-11-11 S. L. Skinner , K. R. Briggs , M. Guedel

Like other young stellar objects (YSOs), FU Ori-type stars have been detected as strong X-ray emitters. However, little is known about how the outbursts of these stars affect their X-ray properties. We assemble available X-ray data from XMM…

Solar and Stellar Astrophysics · Physics 2019-10-02 Michael A. Kuhn , Lynne A. Hillenbrand

FU Orionis objects (FUors) are rapidly-accreting, pre-main sequence objects that are known to exhibit large outbursts at optical and near-infrared wavelengths, with post-eruption, small-scale photometric variability superimposed on…

We present new Chandra X-ray observations of the close pair of young stars RNO 1B and 1C (6$''$ separation) located in the L1287 cloud. RNO 1B erupted in 1978 - 1990 and is classified as an FU Orionis star (FUor). RNO 1C also shows most of…

Solar and Stellar Astrophysics · Physics 2020-05-06 Stephen L. Skinner , Manuel Guedel

The FU Orionis (FUor) or EX Orionis (EXor) phenomenon has attracted increasing attention in recent years and is now accepted as a crucial element in the early evolution of low-mass stars. FUor and EXor eruptions of young stellar objects…

Solar and Stellar Astrophysics · Physics 2012-06-26 J. P. Ninan , D. K. Ojha , B. C. Bhatt , K. K. Mallick , A. Tej , D. K. Sahu , S. K. Ghosh , V. Mohan

We present near-infrared spectroscopic diagnostics that can be used to identify FU Orionis stars (FUOrs). FUOrs are young stellar objects (YSOs) that are currently in a state of extreme outburst, caused by enhanced mass {inflow} from their…

Solar and Stellar Astrophysics · Physics 2026-05-14 Evan R. Portnoi , Lynne A. Hillenbrand , Adolfo S. Carvalho

The occurrence of new FU Orionis-like objects is fundamental to understand the outburst mechanism in young stars and their role in star formation and disk evolution. Our work is aimed at investigating the properties of the recent outburst…

Astrophysics · Physics 2009-11-13 D. Fedele , M. E. van den Ancker , M. G. Petr-Gotzens , P. Rafanelli

We present Herschel-HIFI, SPIRE, and PACS 50-670 {\mu}m imaging and spectroscopy of six FU Orionis-type objects and candidates (FU Orionis, V1735 Cyg, V1515 Cyg, V1057 Cyg, V1331 Cyg, and HBC 722), ranging in outburst date from 1936-2010,…

The Orion Nebula Cluster and the molecular cloud in its vicinity have been observed with the ACIS-I detector on board the Chandra X-ray Observatory with 23 hours exposure. We detect 1075 X-ray sources: 91% are spatially associated with…

Episodic mass accretion is the dominant mechanism for mass assembly in the proto-stellar phase. Although prior optical time-domain searches have allowed detailed studies of individual outbursts, these searches remain insensitive to the…

By using the ALFA adaptive optics system at the 3.6m telescope of the Calar Alto Observatory we detected a faint red star in the apparent vicinity of FU Ori, the prototype of the FUor outburst stars. Independent confirmation of the…

Astrophysics · Physics 2009-11-10 Hongchi Wang , Daniel Apai , Thomas Henning , Ilaria Pascucci

We present observations of three FU Orionis objects (hereafter, FUors) with nonredundant aperture-mask interferometry (NRM) at 1.59 um and 2.12 um that probe for binary companions on the scale of the protoplanetary disk that feeds their…

Solar and Stellar Astrophysics · Physics 2016-10-12 Joel D. Green , Adam L. Kraus , Aaron C. Rizzuto , Michael J. Ireland , Trent J. Dupuy , Andrew W. Mann , Rajika Kuruwita

The variable star V1735 Cyg (= Elias 1-12) lies in the IC 5146 dark cloud and is a member of the class of FU Orionis objects whose dramatic optical brightenings are thought to be linked to episodic accretion. We report the first X-ray…

Solar and Stellar Astrophysics · Physics 2011-02-11 S. L. Skinner , K. R. Sokal , M. Gudel , K. R. Briggs

Accretion shocks have been recognized as important X-ray emission mechanism for pre-main sequence stars. Yet the X-ray properties of FUor outbursts, events that are caused by violent accretion, have been given little attention. We have…

Solar and Stellar Astrophysics · Physics 2015-05-13 B. Stelzer , S. Hubrig , S. Orlando , G. Micela , Z. Mikulasek , M. Schoeller

Context: To follow the early evolution of stars we need to understand how young stars accrete and eject mass. It is generally assumed that the FU Orionis phenomenon is related to the variations in the disk accretion, but many questions…

FU Orionis-type objects (FUors) are low-mass young eruptive stars that represent an evolutionary phase characterized by episodic periods of increased accretion rate from the disk to the star. Theory predicts that a circumstellar envelope,…

Solar and Stellar Astrophysics · Physics 2015-05-30 Ágnes Kóspál

Among the low-mass pre-main sequence stars, a small group called FU Orionis-type objects (FUors) are notable for undergoing powerful accretion outbursts. V1057 Cyg, a classical example of an FUor, went into outburst around 1969-1970, after…

We present X-ray observations of CU Vir performed with XMM-Newton and Chandra. With Lx = 3 x 10^28 erg/s the source is moderately X-ray bright, but its spectrum is extremely hard compared to other Ap stars. Spectral modelling requires…

Solar and Stellar Astrophysics · Physics 2018-11-14 J. Robrade , L. M. Oskinova , J. H. M. M. Schmitt , P. Leto , C. Trigilio

FU Orionis-type objects (FUors) are low-mass pre-main sequence stars undergoing a temporary, but significant increase of mass accretion rate from the circumstellar disk onto the protostar. It is not yet clear what triggers the accretion…

The eruptive YSO FU Ori is the eponym of its variable class. FU Ori stars are known to undergo outbursts with amplitudes of $>4$ magnitudes in the $V$ band and durations of several decades. Interaction with a binary companion is one…

Solar and Stellar Astrophysics · Physics 2024-09-18 Adolfo S. Carvalho , Gregory J. Herczeg , Kevin France , Lynne A. Hillenbrand
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