Time resolved spectroscopy of SGR J1550-5418 bursts detected with Fermi/GBM
arXiv:1402.6015 · doi:10.1088/0004-637X/785/1/52
Abstract
We report on time-resolved spectroscopy of the 63 brightest bursts of SGR J1550-5418, detected with Fermi/Gamma-ray Burst Monitor during its 2008-2009 intense bursting episode. We performed spectral analysis down to 4 ms time-scales, to characterize the spectral evolution of the bursts. Using a Comptonized model, we find that the peak energy, E_peak, anti-correlates with flux, while the low-energy photon index remains constant at -0.8 up to a flux limit F~10^-5 erg s-1 cm-2. Above this flux value the E_peak-flux correlation changes sign, and the index positively correlates with flux reaching 1 at the highest fluxes. Using a two black-body model, we find that the areas and fluxes of the two emitting regions correlate positively. Further, we study here for the first time, the evolution of the temperatures and areas as a function of flux. We find that the area-kT relation follows lines of constant luminosity at the lowest fluxes, R^2 \propto kT^-4, with a break at higher fluxes ($F>10^-5.5 erg s-1 cm-2). The area of the high-kT component increases with flux while its temperature decreases, which we interpret as due to an adiabatic cooling process. The area of the low-kT component, on the other hand, appears to saturate at the highest fluxes, towards R_max~30 km. Assuming that crust quakes are responsible for SGR bursts and considering R_max as the maximum radius of the emitting photon-pair plasma fireball, we relate this saturation radius to a minimum excitation radius of the magnetosphere, and put a lower limit on the internal magnetic field of SGR J1550-5418, B_int>~4.5x10^15 G.
11 Pages, 6 Figures, accpeted for publication in ApJ
References in corpus (11)
- The Nuclear Equation of State and Neutron Star Masses
- Corona of Magnetars
- 1E 1547.0-5408: a radio-emitting magnetar with a rotation period of 2 seconds
- Detection of a Thermal Spectral Component in the Prompt Emission of GRB 100724B
- The outburst decay of the low magnetic field magnetar SGR 0418+5729
- X-ray spectra from magnetar candidates. I. Monte Carlo simulations in the non-relativistic regime
- A Swift gaze into the 2006 March 29th burst forest of SGR 1900+14
- The Compact X-ray Source 1E 1547.0-5408 and the Radio Shell G327.24-0.13: A New Proposed Association between a Candidate Magnetar and a Candidate Supernova Remnant
- Outburst of the 2 s Anomalous X-ray Pulsar 1E 1547.0-5408
- Detection of spectral evolution in the bursts emitted during the 2008-2009 active episode of SGR J1550 - 5418
- Photon splitting and Compton scattering in strongly magnetized hot plasma
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