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Novae are the observable outcome of a transient thermonuclear runaway on the surface of an accreting white dwarf in a close binary system. Their high peak luminosity renders them visible in galaxies out beyond the distance of the Virgo…

太阳与恒星天体物理 · 物理学 2020-08-05 Matthew J. Darnley , Martin Henze

The nova super-remnant (NSR) surrounding M31N 2008-12a (12a), the annually erupting recurrent nova (RN), is the only known example of this phenomenon. As this structure has grown as a result of frequent eruptions from 12a, we might expect…

高能天体物理现象 · 物理学 2023-03-08 M. W. Healy-Kalesh , M. J. Darnley , E. J. Harvey , C. M. Copperwheat , P. A. James , T. Andersson , M. Henze , T. J. O'Brien

Recurrent novae (RNe) are cataclysmic variables with two or more nova eruptions within a century. Classical novae (CNe) are similar systems with only one such eruption. Many of the so-called 'CNe' are actually RNe for which only one…

太阳与恒星天体物理 · 物理学 2015-06-19 Ashley Pagnotta , Bradley E. Schaefer

Here we report that the most rapidly recurring nova, M31N 2008-12a, which erupts annually, is surrounded by a "nova super-remnant" which demonstrates that M31N 2008-12a has erupted with high frequency for millions of years.

M31N 2008-12a is a remarkable recurrent nova within the Andromeda Galaxy. With eleven eruptions now identified, including eight in the past eight years, the system exhibits a recurrence period of one year, and possibly just six months. This…

太阳与恒星天体物理 · 物理学 2016-11-07 M. J. Darnley

Just 10 recurrent novae (RNe) - which erupt repeatedly on timescales shorter than one century - are known in our Galaxy. The most extreme RN known (located in the Andromeda galaxy), M31N 2008-12a, undergoes a nova eruption every year, and…

M31N 2017-01e is the second-fastest recurrent nova known, with a recurrence period of 2.5 years in the Andromeda Galaxy (M31). This system exhibits a unique combination of properties: a low outburst amplitude ($\sim3$ magnitude), starkly…

太阳与恒星天体物理 · 物理学 2025-08-05 Shatakshi Chamoli , Judhajeet Basu , Sudhanshu Barway , G. C. Anupama , Vishwajeet Swain , Varun Bhalero

Recurrent novae (RNe) play an important role as one of the suspected progenitor systems of Type Ia supernovae (SNe) which are used as primary distance indicators in cosmology. Thus, it is important to investigate the nature of their central…

太阳与恒星天体物理 · 物理学 2012-02-22 Farung Surina , Mike F. Bode , Matt J. Darnley

The positions of more than 1300 nova eruptions in M31 catalogued through the end of calendar year 2025 have been compared in order to identify recurrent nova candidates. The work extends the study of Shafter et al. (2015) who identified a…

太阳与恒星天体物理 · 物理学 2026-04-21 Allen W. Shafter , Kamil Hornoch

The Andromeda Galaxy recurrent nova M31N 2008-12a had been caught in eruption eight times. The inter-eruption period of M31N 2008-12a is ~1 year, making it the most rapidly recurring system known, and a strong single-degenerate Type Ia…

Nova super-remnants (NSRs) are substantially extended structures (up to ~130 parsecs across) encompassing recurrent novae. NSRs grow as a result of frequent nova eruptions transporting vast quantities of the locally surrounding interstellar…

星系天体物理 · 物理学 2025-03-26 Michael William Healy-Kalesh

Context: In late November 2013 a fifth eruption in five years of the M31 recurrent nova M31N 2008-12a was announced. Aims: In this Letter we address the optical lightcurve and progenitor system of M31N 2008-12a. Methods: Optical imaging…

太阳与恒星天体物理 · 物理学 2015-06-18 M. J. Darnley , S. C. Williams , M. F. Bode , M. Henze , J. -U. Ness , A. W. Shafter , K. Hornoch , V. Votruba

The reported positions of 964 suspected nova eruptions in M31 recorded through the end of calendar year 2013 have been compared in order to identify recurrent nova candidates. To pass the initial screen and qualify as a recurrent nova…

太阳与恒星天体物理 · 物理学 2015-06-23 A. W. Shafter , M. Henze , T. A. Rector , F. Schweizer , K. Hornoch , M. Orio , W. Pietsch , M. J. Darnley , S. C. Williams , M. F. Bode , J. Bryan

I collect virtually all photometry of the ten known galactic recurrent novae (RNe) and their 37 known eruptions. This consists of my modern measures of nearly all archival plates (providing the only data for half of 37 known eruptions), my…

太阳与恒星天体物理 · 物理学 2014-11-20 Bradley E. Schaefer

The Andromeda Galaxy is home to the annually erupting recurrent nova (RN) M31N 2008-12a (12a); the first nova found to host a nova super-remnant (NSR). A NSR is an immense structure surrounding a RN, created from many millions of eruptions…

高能天体物理现象 · 物理学 2024-01-10 M. W. Healy-Kalesh , M. J. Darnley , M. M. Shara

The M 31 nova M31N 2008-12a was recently found to be a recurrent nova (RN) with a recurrence time of about 1 year. This is by far the fastest recurrence time scale of any known RNe. Our optical monitoring programme detected the predicted…

高能天体物理现象 · 物理学 2015-07-29 M. Henze , J. -U. Ness , M. J. Darnley , M. F. Bode , S. C. Williams , A. W. Shafter , G. Sala , M. Kato , I. Hachisu , M. Hernanz

The nova M31N 2023-11f (2023yoa) has been recently identified as the second eruption of a previously recognized nova, M31N 2013-10c, establishing the latter object as the 21st recurrent nova system thus far identified in M31. Here we…

Extremely luminous, red eruptive variables like RV in M31 are being suggested as exemplars of a new class of astrophysical object. Our greatly extended series of nova simulations shows that classical nova models can produce very red,…

太阳与恒星天体物理 · 物理学 2015-05-20 Michael M. Shara , Ofer Yaron , Dina Prialnik , Attay Kovetz , David Zurek

We report the optical, UV, and soft X-ray observations of the $2017-2022$ eruptions of the recurrent nova M31N 2008-12a. We infer a steady decrease in the accretion rate over the years based on the inter-eruption recurrence period. We find…

We report the results of a survey of M31 novae in quiescence. This is the first catalog of extragalactic systems in quiescence to be published, and contains data for 38 spectroscopically confirmed novae from 2006 to 2012. We used Liverpool…

太阳与恒星天体物理 · 物理学 2015-06-19 S. C. Williams , M. J. Darnley , M. F. Bode , A. Keen , A. W. Shafter
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