Título: The outburst decay of the low magnetic field magnetar SGR 0418+5729
Autores: Rea, Nanda
Israel, Gian Luca
Pons Botella, José Antonio
Turolla, Roberto
Viganò, Daniele
Zane, Silvia
Esposito, Paolo
Perna, Rosalba
Papitto, Alessandro
Terreran, Giacomo
Tiengo, Andrea
Salvetti, David
Girart, Josep Miquel
Palau, Aina
Possenti, Andrea
Burgay, Marta
Göğüş, Ersin
Caliandro, G. Andrea
Kouveliotou, Chryssa
Götz, Diego
Mignani, Roberto P.
Ratti, Eva
Stella, Luigi
Fecha: 2013-11-12
2013-11-12
2013-05-24
Publicador: RUA Docencia
Fuente:
Tipo: info:eu-repo/semantics/article
Tema: Stars: individual (SGR 0418+5729)
Stars: magnetic field
Stars: neutron
Astronomía y Astrofísica
Descripción: We report on the long-term X-ray monitoring of the outburst decay of the low magnetic field magnetar SGR 0418+5729 using all the available X-ray data obtained with RXTE, Swift, Chandra, and XMM-Newton observations from the discovery of the source in 2009 June up to 2012 August. The timing analysis allowed us to obtain the first measurement of the period derivative of SGR 0418+5729: ˙ P = 4(1) × 10−15 s s−1, significant at a ∼3.5σ confidence level. This leads to a surface dipolar magnetic field of Bdip 6 × 1012 G. This measurement confirms SGR 0418+5729 as the lowest magnetic field magnetar. Following the flux and spectral evolution from the beginning of the outburst up to ∼1200 days, we observe a gradual cooling of the tiny hot spot responsible for the X-ray emission, from a temperature of ∼0.9 to 0.3 keV. Simultaneously, the X-ray flux decreased by about three orders of magnitude: from about 1.4 × 10−11 to 1.2 × 10−14 erg s−1 cm−2. Deep radio, millimeter, optical, and gamma-ray observations did not detect the source counterpart, implying stringent limits on its multi-band emission, as well as constraints on the presence of a fossil disk. By modeling the magneto-thermal secular evolution of SGR 0418+5729, we infer a realistic age of ∼550 kyr, and a dipolar magnetic field at birth of ∼1014 G. The outburst characteristics suggest the presence of a thin twisted bundle with a small heated spot at its base. The bundle untwisted in the first few months following the outburst, while the hot spot decreases in temperature and size. We estimate the outburst rate of low magnetic field magnetars to be about one per year per galaxy, and we briefly discuss the consequences of such a result in several other astrophysical contexts.
N.R. is supported by a Ramon y Cajal Research Fellowship, and by grants AYA2009-07391, AYA2012-39303, SGR2009-811, TW2010005, and iLINK 2011-0303. J.A.P. and D.V. acknowledge support from the grants AYA 2010-21097-C03-02 and Prometeo/2009/103. R.T. and S.M. are partially funded through an INAF 2011 PRIN grant. A.P. is supported by a JAE-Doc CSIC fellowship co-funded with the European Social Fund under the program “Junta para la Ampliación de Estudios,” by the Spanish MICINN grant AYA2011-30228-C03-02 (co-funded with FEDER funds), and by the AGAUR grant 2009SGR1172 (Catalonia).
Idioma: Inglés

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