Models for the spectra and the light curve (LC), in the photospheric as well as in the late nebular phase, are used to infer the properties of the very radio-bright, broad-lined type IIb supernova (SN) 2003bg. Consistent fits to the LC and the spectral evolution are obtained with an explosion that ejected ≈4 M ☉ of material with a kinetic energy of ≈5 × 10 51 erg. A thin layer of hydrogen, comprising ∼0.05 M ☉ , is inferred to be present in the ejecta at the highest velocities ( v ≳ 9000 km s −1 ), while a thicker helium layer, comprising ≈1.25 M ☉ , was ejected at velocities between 6500 and 9000 km s −1 . At lower velocities, heavier elements are present, including ∼0.2 M ☉ of 56 Ni that shape the LC and the late-time nebular spectra. These values suggest that the progenitor star had a mass of ≈20–25 M ☉ , (comparable to, but maybe somewhat smaller than that of the progenitor of the X-ray flashes/SN 2008D). The rather broad-lined early spectra are the result of the presence of a small amount of material (≈0.03 M ☉ ) at velocities >0.1 c , which carries ≈10% of the explosion kinetic energy. No clear signatures of a highly aspherical explosion are detected.
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