The abundance stratification in the ejecta of the normal Type Ia Supernova 2002bo is derived fitting a series of spectra obtained at close time intervals. A Montecarlo code, modified to include abundance stratification, is used to compute synthetic spectra at 13 epochs in the photospheric phase, starting 13 days before B maximum. A description of the abundance distribution above 7600kms −1 is thus obtained. Abundances in deeper layers, down to zero velocity, are derived from models of two nebular-phase spectra. Elements synthesised in different stages of burning are significantly, but not completely mixed in the ejecta. A total 56 Ni mass of 0.52M ⊙ is derived. Evidence for intermediate-mass elements at high velocities ( � 18, 000kms −1) is found, most clearly in Siii 6355˚A, Caii H&K, and in the Caii IR triplet. Carbon lines are not seen at any velocity, with possible implications on the progenitor/explosion scenario. A synthetic bolometric light curve computed using the inferred abundance distribution is in very good agreement with the observed one, providing an independent check. In particular, the fast rise of the light curve is reproduced very well. This is due to outward mixing of 56 Ni, which is clearly well determined by the spectroscopic modelling.
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Stehle et al. (2005) studied this question.
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