8,050 research outputs found

    Coherent Emission from Magnetars

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    It is proposed that magnetospheric currents above the surfaces of magnetars radiate coherent emission in analogy to pulsars. Scaling the magnetospheric parameters suggests that the coherent emission from magnetars would emerge in the infra-red or optical

    Hard Burst Emission from the Soft Gamma Repeater SGR 1900+14

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    We present evidence for burst emission from SGR 1900+14 with a power-law high energy spectrum extending beyond 500 keV. Unlike previous detections of high energy photons during bursts from SGRs, these emissions are not associated with high-luminosity burst intervals. Not only is the emission hard, but the spectra are better fit by Band's GRB function rather than by the traditional optically-thin thermal bremsstrahlung model. We find that the spectral evolution within these hard events obeys a hardness/intensity anti-correlation. Temporally, these events are distinct from typical SGR burst emissions in that they are longer (~ 1 s) and have relatively smooth profiles. Despite a difference in peak luminosity of > 1E+11 between these bursts from SGR 1900+14 and cosmological GRBs, there are striking temporal and spectral similarities between the two kinds of bursts, aside from spectral evolution. We outline an interpretation of these events in the context of the magnetar model.Comment: 11 pages (text and figures), submitted to ApJ Letters, corrected erroneous hardness ratio

    Hadronic decay of a scalar B meson from the lattice

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    We explore the transitions B(0+)(0^+) to B π\pi and Bs(0+)_s(0^+) to B K from lattice QCD with Nf=2N_f=2 flavours of sea quark, using the static approximation for the heavy quark. We evaluate the effective coupling constants, predicting a B(0+)(0^+) to B π\pi width of around 160 MeV. Our result for the coupling strength adds to the evidence that the Bs(0+)_s(0^+) meson is not predominantly a molecular state (BK).Comment: 10 pages LATE
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