Abstract
A classical nova results from runaway thermonuclear explosions on the surface of a white dwarf that accretes matter from a low-mass main-sequence stellar companion. In 2012 and 2013, three novae were detected in γ rays and stood in contrast to the first γ-ray-detected nova V407 Cygni 2010, which belongs to a rare class of symbiotic binary systems. Despite likely differences in the compositions and masses of their white dwarf progenitors, the three classical novae are similarly characterized as soft-spectrum transient γ-ray sources detected over 2- to 3-week durations. The γ-ray detections point to unexpected high-energy particle acceleration processes linked to the mass ejection from thermonuclear explosions in an unanticipated class of Galactic γ-ray sources.
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CITATION STYLE
Ermann, M., Ajello, M., Albert, A., Baldini, L., Ballet, J., Barbiellini, G., … Teyssier, F. (2014). Fermi establishes classical novae as a distinct class of gamma-ray sources: The Fermi-LAT collaboration. Science, 345(6196), 554–558. https://doi.org/10.1126/science.1253947
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