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Related papers: The supersoft X-ray source in V5116 Sgr I. The hig…

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V5116 Sgr (Nova Sgr 2005 No. 2), discovered on 2005 July 4, was observed with XMM-Newton in March 2007, 20 months after the optical outburst. The X-ray spectrum shows that the nova had evolved to a pure supersoft X-ray source, with no…

Astrophysics · Physics 2009-11-13 Gloria Sala , Margarita Hernanz , Carlo Ferri , Jochen Greiner

Nova V5116 Sgr 2005 No. 2, discovered on 2005 July 4, was observed with XMM-Newton in March 2007, 20 months after the optical outburst. The X-ray spectrum showed that the nova had evolved to a pure supersoft X-ray source, indicative of…

High Energy Astrophysical Phenomena · Physics 2015-05-14 Gloria Sala , Margarita Hernanz , Carlo Ferri , Jochen Greiner

I review X-ray observations of classical and recurrent novae in outburst. Significant X-ray flux is emitted by the nova shell, with a peak luminosity up to 10**35 erg/cm**2/s in the 0.2-10 keV range.In recurrent nova systems, or in novae…

Astrophysics · Physics 2016-08-30 Marina Orio

X-ray grating spectra have opened a new window on the nova physics. High signal-to-noise spectra have been obtained for 12 novae after the outburst in the last 13 years with the Chandra and XMM-Newton gratings. They offer the only way to…

High Energy Astrophysical Phenomena · Physics 2012-10-17 Marina Orio

Detection of X-rays from classical novae, both in outburst and post-outburst, provides unique and crucial information about the explosion mechanism. Soft X-rays reveal the hot white dwarf photosphere, whenever hydrogen (H) nuclear burning…

High Energy Astrophysical Phenomena · Physics 2015-05-14 M. Hernanz , G. Sala

Novae have been reported as transients for more than two thousand years. Their bright optical outbursts are the result of explosive nuclear burning of gas accreted from a binary companion onto a white dwarf. Novae containing a white dwarf…

Solar and Stellar Astrophysics · Physics 2015-09-29 Julian P. Osborne

Classical novae occur in close binary systems (main-sequence star + white dwarf). V4743 Sgr is a very fast nova exhibiting a X-ray spectrum which is consistent with a view on the optically thick atmosphere of an extremely hot white dwarf…

Astrophysics · Physics 2009-11-10 Thomas Rauch , Klaus Werner , Marina Orio

For several novae, a bright X-ray source with a spectrum resembling the class of Super Soft X-ray Sources (SSS) has been observed a few weeks to months after outburst. Novae are powered by explosive nuclear burning on the surface of a white…

High Energy Astrophysical Phenomena · Physics 2015-05-14 J. -U. Ness

The super-soft source (SSS) phase of a nova eruption, observed a few days after the outburst, usually displays an absorbed X-ray thermal continuum with absorption features, emitted by the white dwarf (WD) atmosphere. However, the X-ray…

High Energy Astrophysical Phenomena · Physics 2025-07-04 Sharon Mitrani , Ehud Behar , Marina Orio , Jack Worley

X-ray emission from counterparts of historical classical novae (CNe) in our Galaxy is studied. To this end, we use data from three SRG/eROSITA sky surveys in the hemisphere analyzed by the RU eROSITA consortium. Out of 309 historical CNe,…

High Energy Astrophysical Phenomena · Physics 2022-01-05 I. Galiullin , M. Gilfanov

We report the results of X-ray and gamma-ray analyses of the classical-nova V1716 Sco using data taken by \verb|Swift|, \verb|NICER|, \verb|NuSTAR| and \verb|Fermi|-LAT. We confirm gamma-ray emission at a significant level exceeding…

High Energy Astrophysical Phenomena · Physics 2024-11-14 H. -H. Wang , H. -D. Yan , J. Takata , L. C. -C. Lin

Supersoft X-ray sources are stellar objects which emit X-rays with temperatures of about 1 million Kelvin and luminosities well in excess of what can be produced by stellar coronae. It has generally been presumed that the objects in this…

Supersoft X-ray sources (SSSs) are characterized by persistent thermonuclear burning on the surfaces of white dwarfs (WDs).The standard model requires high mass transfer rates of $\sim 10^{-7}\, {\rm M_{\odot}}\,yr^{-1}$ from massive…

High Energy Astrophysical Phenomena · Physics 2025-12-18 Weitao Zhao , Xiangcun Meng , Yingzhen Cui , Yunlang Guo

The new gamma-ray burst mission Swift has obtained pointed observations of several classical novae in outburst. We analyzed all the observations of classical novae from the Swift archive up to 30 June, 2006. We analyzed usable observations…

Some accreting binary systems containing a white dwarf (such as classical novae or persistent supersoft sources) are seen to emit low-energy X-rays with temperatures of ~10^6 K and luminosities exceeding 10^35 erg/s. These X-rays are…

We have analysed 350 pointed and serendipitous observations of 108 different classical and recurrent novae in outburst and in quiescence, contained in the ROSAT archive. One aim was to search for super-soft X-ray sources and we found only 3…

Astrophysics · Physics 2009-11-06 M. Orio , J. Covington , H. Ogelman

Nova explosions occur on accreting white dwarfs. A thermonuclear runaway in the H-rich accreted envelope causes its ejection without destroying the white dwarf, and an increase in the luminosity by several magnitudes. Accretion is…

High Energy Astrophysical Phenomena · Physics 2026-01-14 Gloria Sala , Frank Haberl , Axel Schwope , Dusán Tubín-Arenas , Elif Şafak , Chandreyee Maitra , Jochen Greiner

Supersoft X-ray sources (SSS) have been identified as white dwarfs accreting from binary companions and undergoing nuclear-burning of the accreted material on their surface. Although expected to be a relatively numerous population from both…

High Energy Astrophysical Phenomena · Physics 2020-09-30 G. Vasilopoulos , F. Koliopanos , T. E. Woods , F. Haberl , M. D. Soraisam , A. Udalski

I review various phenomena associated with mass-accreting white dwarfs (WDs) in the view of supersoft X-ray sources. When the mass-accretion rate is low (\dot M_{acc} < a few \times 10^{-7} M_\sun yr^{-1}), hydrogen nuclear burning is…

Solar and Stellar Astrophysics · Physics 2015-05-14 Mariko Kato

The Swift GRB satellite is an excellent facility for studying novae. Its rapid response time and sensitive X-ray detector provides an unparalleled opportunity to investigate the previously poorly sampled evolution of novae in the X-ray…

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