By performing axisymmetric hydrodynamic simulations of core-collapse supernovae with spectral neutrino transport based on the isotropic diffusion source approximation scheme, we support the assumption that the neutrino-heating mechanism aided by the standing accretion shock instability (SASI) and convection can initiate an explosion of a 13\ M_ star. Our results show that bipolar explosions are more likely to be associated with models that include rotation. We point out that models that form a north–south symmetric bipolar explosion can lead to larger explosion energies than the corresponding unipolar explosions can.
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