Extraordinary luminous soft x-ray transient maxi j0158-744 as an ignition of a nova on a very massive o-ne white dwarf

We present the observation of an extraordinary luminous soft X-ray transient, MAXI J0158-744, by the Monitor of All-sky X-ray Image (MAXI) on 2011 November 11. This transient is characterized by a soft X-ray spectrum, a short duration (1.3 × 103 s < Td < 1.10 × 104 s), a very rapid...

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Bibliographic Details
Main Authors: Morii, M., Tomida, H., Kimura, M., Suwa, F., Negoro, H., Serino, M., Kennea, J., Curran, Peter, Walter, F., Kuin, N., Pritchard, T., Nakahira, S., Hiroi, K., Usui, R., Kawai, N., Osborne, J., Mihara, T., Sugizaki, M., Gehrels, N., Kohama, M., Kotani, T., Matsuoka, M., Nakajima, M., Roming, P., Sakamoto, T., Sugimori, K., Tsuboi, Y., Tsunemi, H., Ueda, Y., Ueno, S., Yoshida, A.
Format: Journal Article
Published: Institute of Physics Publishing 2013
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Online Access:http://hdl.handle.net/20.500.11937/7188
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Summary:We present the observation of an extraordinary luminous soft X-ray transient, MAXI J0158-744, by the Monitor of All-sky X-ray Image (MAXI) on 2011 November 11. This transient is characterized by a soft X-ray spectrum, a short duration (1.3 × 103 s < Td < 1.10 × 104 s), a very rapid rise (< 5.5 × 103 s), and a huge peak luminosity of 2×1040 erg s-1 in 0.7-7.0 keV band. With Swift observations and optical spectroscopy from the Small and Moderate Aperture Research Telescope System (SMARTS), we confirmed that the transient is a nova explosion, on a white dwarf in a binary with a Be star, located near the Small Magellanic Cloud. An extremely early turn-on of the super-soft X-ray source (SSS) phase (< 0.44 d), the short SSS phase duration of about one month, and a 0.92 keV neon emission line found in the third MAXI scan, 1296 s after the first detection, suggest that the explosion involves a small amount of ejecta and is produced on an unusually massive O-Ne white dwarf close to, or possibly over, the Chandrasekhar limit. We propose that the huge luminosity detected with MAXI was due to the fireball phase, a direct manifestation of the ignition of the thermonuclear runaway process in a nova explosion.