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相关论文: The ALMA early science view of FUor/EXor objects -…

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In the last twenty years, the topic of episodic accretion has gained significant interest in the star formation community. It is now viewed as a common, though still poorly understood, phenomenon in low-mass star formation. The FU Orionis…

FU Ori type objects (FUors) are decades-long outbursts of accretion onto young stars that are strong enough to viscously heat disks so that the disk outshines the central star. We construct models for FUor objects by calculating emission…

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…

太阳与恒星天体物理 · 物理学 2016-10-12 Joel D. Green , Adam L. Kraus , Aaron C. Rizzuto , Michael J. Ireland , Trent J. Dupuy , Andrew W. Mann , Rajika Kuruwita

We present a detailed study of V899 Mon (a new member in the FUors/EXors family of young low-mass stars undergoing outburst), based on our long-term monitoring of the source starting from November 2009 to April 2015. Our optical and…

太阳与恒星天体物理 · 物理学 2015-12-09 J. P. Ninan , D. K. Ojha , T. Baug , B. C. Bhatt , V. Mohan , S. K. Ghosh , A. Men'shchikov , G. C. Anupama , M. Tamura , Th. Henning

Young eruptive stars such as EXors undergo dramatic accretion outbursts characterized by sudden optical brightenings, yet the underlying physical mechanism remains uncertain. We present high-resolution Atacama Large Millimeter/submillimeter…

地球与行星天体物理 · 物理学 2025-10-01 Masayuki Yamaguchi , Hauyu Baobab Liu , Michihiro Takami , Pin-Gao Gu

FU Orionis type objects (fuors) are characterized by rapid (tens to hundreds years) episodic outbursts, during which the luminosity increases by orders of magnitude. One of the possible causes of such events is a close encounter between…

太阳与恒星天体物理 · 物理学 2024-02-23 Aleksandr M. Skliarevskii , Eduard I. Vorobyov

Eruptive accretion events are expected to play an important role in the mass buildup stage of individual star formation. FU Ori objects (FUors) experience the most extreme eruptive outbursts, which raise the accretion rate of the disk from…

太阳与恒星天体物理 · 物理学 2026-04-23 Adolfo S. Carvalho , Lynne A. Hillenbrand

The evolution of young stars and planet-forming environments is intrinsically linked to their nascent surroundings. This is particularly evident for FU Orionis (FUor) objects$-$a class of young protostars known for dramatic outbursts…

FUors are young stellar objects experiencing large optical outbursts due to highly enhanced accretion from the circumstellar disk onto the star. FUors are often surrounded by massive envelopes, which play a significant role in the outburst…

太阳与恒星天体物理 · 物理学 2017-03-08 Á. Kóspál , P. Ábrahám , T. Csengeri , Th. Henning , A. Moór , R. Güsten

FU Orionis (FUor) and EX Lupi (EXor) type objects represent two small, but rather spectacular groups of low-mass, young eruptive stars. Outbursts of several magnitudes are observed, attributed to enhanced accretion from the circumstellar…

太阳与恒星天体物理 · 物理学 2023-04-19 Zs. M. Szabó , Y. Gong , K. M. Menten , W. Yang , C. J. Cyganowski , Á. Kóspál , P. Ábrahám , A. Belloche , F. Wyrowski

FUor outbursts in young stellar objects (YSOs) are the most dramatic events among episodic accretion phenomena. The origin of these bursts is not clear: disk instabilities and/or disk perturbations by an external body being the most viable…

We present the first results of a pilot program to conduct an Atacama Large Millimeter/submillimeter Array (ALMA) Band 6 (211-275 GHz) spectral line study of young stellar objects (YSO) that are undergoing rapid accretion episodes, i.e. FU…

太阳与恒星天体物理 · 物理学 2022-07-20 D. A. Ruiz-Rodriguez , J. P. Williams , J. H. Kastner , L. Cieza , M. Leemker , D. A. Principe

FU Orionis stars (FUORS) are eruptive pre-main sequence objects thought to represent quasi-periodic or recurring stages of enhanced accretion during the low-mass star-forming process. We characterize the sample of known and candidate FUORS…

太阳与恒星天体物理 · 物理学 2014-02-14 Luciana V. Gramajo , Javier A. Rodón , Mercedes Gómez

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,…

太阳与恒星天体物理 · 物理学 2015-05-30 Ágnes Kóspál

Having disk-to-star accretion rates on the order of 10$^{-4}\,M_{\odot}$/yr, FU Orionis-type stars (FUors) are thought to be the visible examples for episodic accretion. FUors are often surrounded by massive envelopes, which replenish the…

太阳与恒星天体物理 · 物理学 2020-02-12 Á. Kóspál , P. Ábrahám , O. Fehér , F. Cruz-Saenz de Miera , M. Takami

We present Atacama Large Millimeter/sub-millimeter Array (ALMA) Cycle-2 observations of the HBC 494 molecular outflow and envelope. HBC 494 is an FU Ori-like object embedded in the Orion A cloud and is associated with the reflection nebulae…

FU Orionis objects (FUors) are eruptive young stars, which exhibit outbursts that last from decades to a century. Due to the duration of their outbursts, and to the fact that only about two dozens of such sources are known, information on…

V582 Aur is an FU Ori-type young eruptive star in outburst since $\sim$1985. The eruption is currently in a relatively constant plateau phase, with photometric and spectroscopic variability superimposed. Here we will characterize the…

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…

天体物理学 · 物理学 2009-11-13 D. Fedele , M. E. van den Ancker , M. G. Petr-Gotzens , P. Rafanelli

We argue that the outbursts of the FU Orionis stars occur on timescales which are much longer than expected from the standard disc instability model with \alpha_{c} \gtrsim 10^{-3}. The outburst, recurrence, and rise times are consistent…

天体物理学 · 物理学 2009-11-10 O. M. Matthews , R. Speith , G. A. Wynn