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Related papers: X Ray Observations of Classical and recurrent Nova…

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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

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

Detection of X-ray emission from classical novae in their post-outburst stages provides crucial information about the nova phenomenon. The soft X-ray emission gives a direct insight into the remaining hot nuclear burning shell. A numerical…

Astrophysics · Physics 2007-05-23 Gloria Sala , Margarita Hernanz

Classical novae occur on the surface of an accreting white dwarf in a binary system. After ejection of a fraction of the envelope and when the expanding shell becomes optically thin to X-rays, a bright source of supersoft X-rays arises,…

High Energy Astrophysical Phenomena · Physics 2017-05-10 G. Sala , J. U. Ness , M. Hernanz , J. Greiner

Models of nova outbursts suggest that an X-ray flash should occur just after hydrogen ignition. However, this X-ray flash has never been observationally confirmed. We present four theoretical light curves of the X-ray flash for two very…

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

After an optical peak, a classical or recurrent nova settles into a brief (days to years) period of quasi-stable thermonuclear burning in a compact configuration nearly at the white dwarf (WD) radius. During this time, the underlying WD…

Solar and Stellar Astrophysics · Physics 2018-03-28 William M. Wolf , Richard H. D. Townsend , Lars Bildsten

Classical novae are phenomena caused by explosive hydrogen burning on an accreting white dwarf. So far, only one classical nova has been identified in X-rays before the actual optical outburst occurred (V2487 Oph). The recently discovered…

Stellar explosions such as novae and supernovae produce most of the heavy elements in the Universe. Although the onset of novae from runaway thermonuclear fusion reactions on the surface of a white dwarf in a binary star system is…

Astrophysics · Physics 2009-11-11 J. L. Sokoloski , G. J. M. Luna , K. Mukai , Scott J. Kenyon

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…

A hydrostatic and stationary white dwarf envelope model has been developed for the study of the post-outburst phases of classical novae and their soft X-ray emission. Several white dwarf masses and chemical compositions typical for…

Astrophysics · Physics 2009-11-11 Gloria Sala , Margarita Hernanz

Nova LMC 1995, previously detected during 1995-1998 with ROSAT, was observed again as a luminous supersoft X-ray source with XMM-Newton in December of 2000. This nova offers the possibility to observe the spectrum of a hot white dwarf,…

Astrophysics · Physics 2009-11-07 Marina Orio , Wouter Hartmann , Martin Still , 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

Novae are caused by runaway thermonuclear burning in the hydrogen-rich envelopes of accreting white dwarfs, which results in the envelope to expand rapidly and to eject most of its mass. For more than 30 years, nova theory has predicted the…

Classical novae are runaway thermonuclear burning events on the surfaces of accreting white dwarfs in close binary star systems, sometimes appearing as new naked-eye sources in the night sky. The standard model of novae predicts that their…

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

We have observed the fast nova V5583 Sagittarii with five B, V, y, R_C, and I_C bands, and found that these multi-band light curves are almost identical with those of V382 Vel 1999 until at least 100 days after outburst. A supersoft X-ray…

Solar and Stellar Astrophysics · Physics 2009-12-31 Izumi Hachisu , Mariko Kato , Seiichiro Kiyota , Hiroyuki Maehara

We present one-dimensional hydrodynamical simulations including radiative losses, of internal shocks in the outflows from classical novae, to explore the role of shocks in powering multi-wavelength emission from radio to gamma-ray…

High Energy Astrophysical Phenomena · Physics 2020-01-08 Elad Steinberg , Brian D. Metzger

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

Shock interaction in classical novae occurs when a fast outflow from the white dwarf > 1000 km s/s collides with a slower, cooler shell of gas released earlier in the outburst. The shocks radiate across the electromagnetic spectrum, from…

High Energy Astrophysical Phenomena · Physics 2025-06-12 Brian D. Metzger , Lachlan Lancaster , Rebecca Diesing
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