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Related papers: A Young Open Cluster Surrounding V838 Monocerotis

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The unusual variable star V838 Monocerotis underwent an eruption in 2002. It continues to illuminate a spectacular series of light echoes, as the outburst light is scattered from circumstellar dust. V838 Mon has an unresolved B3 V companion…

Astrophysics · Physics 2008-11-26 Melike Afşar , Howard E. Bond

Insight into the origin of unusual events like the eruption of V838 Mon can be obtained from studies of the stellar populations from which they arise. V838 Mon lies in an intriguing region of the Galaxy, toward the warped outer edge of the…

Astrophysics · Physics 2007-05-23 Michael H. Siegel , Howard E. Bond

V838 Mon erupted in 2002 quickly becoming the prototype of a new type of stellar eruptions known today as (luminous) red novae. The red nova outbursts are thought to be caused by stellar mergers. The merger in V838 Mon took place in a…

Aims. V838 Monocerotis erupted in 2002, brightened in a series of outbursts, and eventually developed a spectacular light echo. A very red star emerged a few months after the outburst. The whole event has been interpreted as the result of a…

V838 Mon is marking one of the most mysterious stellar outbursts on record. The spectral energy distribution of the progenitor resembles an under-luminous F main sequence star (at V=15.6 mag), that erupted into a cool supergiant following a…

We report high spatial resolution 11.2 and 18.1 micron imaging of V838 Monocerotis obtained with Gemini Observatory's Michelle instrument in 2007 March. Strong emission is observed from the unresolved stellar core of V838 Mon in our Gemini…

Astrophysics · Physics 2009-11-13 John P. Wisniewski , Mark Clampin , Karen S. Bjorkman , Richard K. Barry

We report the discovery of multiple shells around the eruptive variable star V838 Mon. Two dust shells are seen in IRAS and MSX images, which themselves are situated in a shell of CO. This securely establishes V838 Mon as an evolved object.…

Astrophysics · Physics 2009-11-10 Jacco Th. van Loon , A. Evans , Mark T. Rushton , Barry Smalley

M31 RV is a luminous red variable star that appeared for several months in the bulge of M31 during 1988. Unlike classical novae, M31 RV was cool throughout its outburst. Interest in this object has revived recently because of its strong…

Astrophysics · Physics 2008-11-26 Howard E. Bond , and Michael H. Siegel

We summarize and analyze the available observational data on the progenitor and the enviroment of V838 Mon. From the available photometric data for the progenitor of V838 Mon we exclude the possibility that the object before eruption was an…

Astrophysics · Physics 2009-11-10 R. Tylenda , N. Soker , R. Szczerba

V838 Mon has undergone one of the most mysterious stellar outbursts on record. The spectrum at maximum closely resembled a cool AGB star, evolving toward cooler temperatures with time, never reaching optically thin conditions or a nebular…

Astrophysics · Physics 2009-11-07 U. Munari , A. Henden , R. M. L. Corradi , T. Zwitter

V838 Monocerotis (V838 Mon) erupted in 2002 as a luminous red nova after which it cooled and began to form dust. The remnant is predicted to become a blue straggler. Interferometric observations in the HKLM bands have uncovered a stable…

Solar and Stellar Astrophysics · Physics 2025-06-04 Muhammad Zain Mobeen , Tomasz Kamiński , Stephen Potter

V838 Mon underwent, after a first nova-like outburst in January and a usual decline, a second outburst after one month, and a third weak one again a month later. Moreover a very small increase of the temperature at the beginning of April…

Astrophysics · Physics 2009-11-07 S. Kimeswenger , C. Lederle , S. Schmeja , B. Armsdorfer

One of the hypothesis to explain the outburst of V838 Mon is the engulfment of planets. More than 170 extrasolar planets were discovered in the past years. Their properties and the characteristics of their host stars can be used to evaluate…

Astrophysics · Physics 2007-05-23 S. Desidera

Context. V838 Mon is an eruptive variable, which exploded in 2002. It displayed the most spectacular light echo ever observed. However, neither the origin of the reflecting matter nor the nature of the 2002 outburst have been firmly…

Astrophysics of Galaxies · Physics 2015-05-27 T. Kamiński , R. Tylenda , S. Deguchi

In 2002, V838 Monocerotis (V838 Mon) erupted in a red novae event which has been interpreted to be a stellar merger. Soon after reaching peak luminosity, it began to cool, and its spectrum evolved to later spectral types. Dust was also…

Solar and Stellar Astrophysics · Physics 2021-12-01 Muhammad Zain Mobeen , Tomasz Kamiński , Alexis Matter , Markus Wittkowski , Claudia Paladini

We report high spatial resolution 11.2 and 18.1 micron imaging of the eruptive variable V838 Monocerotis, obtained with Gemini Observatory's Michelle in 2007 March. The 2007 flux density of the unresolved stellar core is roughly 2 times…

Astrophysics · Physics 2009-11-13 John P. Wisniewski , Mark Clampin , Karen S. Bjorkman , Richard K. Barry , ;

V838 Mon is the prototype of a new class of objects. Understanding the nature of its multi-stage outburst and similar systems is challenging. So far, several scenarios have been invoked to explain this group of stars. In this work, the…

Astrophysics · Physics 2009-11-11 Alon Retter , Bing Zhang , Lionel Siess , Amir Levinson

Luminous Red Variables (LRVs) are most likely eruptions that are the outcome of stellar mergers. V838 Mon is one of the best-studied members of this class, representing an archetype for stellar mergers resulting from B-type stars. As result…

Some classes of stars, including supernovae and novae, undergo explosive outbursts that eject stellar material into space. In 2002, the previously unknown variable star V838 Monocerotis brightened suddenly by a factor of about 10^4. Unlike…

We discuss various models and scenarios proposed to explain the nature of the V838 Mon type eruptions. In this class of eruptive objects we include: M31 RV (erupted in 1988), V4332 Sgr (erupted in 1994) and V838 Mon (erupted in 2002). We…

Astrophysics · Physics 2009-11-11 R. Tylenda , N. Soker
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