We investigate the role of Alfven waves in a core-collapse supernova (SN) explosion. We assume that Alfven waves are generated by convections inside a proto-neutron star (PNS) and emitted from its surface. These waves then propagate outward, dissipate via nonlinear processes, and heat up matter around a stalled prompt shock. To quantitatively assess the importance of this process for the revival of the stalled shock, we perform one-dimensional time-dependent hydrodynamical simulations, taking into account the heating via the dissipation of Alfven waves that propagate radially outward along open flux tubes. We show that shock revival occurs if the surface field strength is larger than similar to 2 x 10(15) G and if the amplitude of the velocity fluctuation at the PNS surface is larger than similar to 20% of the local sound speed. Interestingly, the Alfven wave mechanism is self-regulating in the sense that the explosion energy is not very sensitive to the surface field strength or initial amplitude of Alfven waves, as long as they are larger than the threshold values given above.
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European Ctr Medium Range Weather Forecasts, Reading RG2 9AX, Berks, EnglandEuropean Ctr Medium Range Weather Forecasts, Reading RG2 9AX, Berks, England
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Univ Western Australia, Sch Environm Syst Engn, Crawley, WA 6009, AustraliaUniv Western Australia, Sch Environm Syst Engn, Crawley, WA 6009, Australia
Pattiaratchi, Charitha
Olsson, Dale
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Univ Western Australia, Sch Environm Syst Engn, Crawley, WA 6009, AustraliaUniv Western Australia, Sch Environm Syst Engn, Crawley, WA 6009, Australia
Olsson, Dale
Hetzel, Yasha
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Univ Western Australia, Sch Environm Syst Engn, Crawley, WA 6009, AustraliaUniv Western Australia, Sch Environm Syst Engn, Crawley, WA 6009, Australia
Hetzel, Yasha
Lowe, Ryan
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Univ Western Australia, Sch Environm Syst Engn, Crawley, WA 6009, AustraliaUniv Western Australia, Sch Environm Syst Engn, Crawley, WA 6009, Australia