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Impact of nucleon-nucleon bremsstrahlung rates beyond one-pion exchange

Bartl, A. and Bollig, R. and Janka, H.-T. and Schwenk, A.

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Abstract

Neutrino-pair production and annihilation through nucleon-nucleon bremsstrahlung is included in current supernova simulations by rates that are based on the one-pion-exchange approximation. Here we explore the consequences of bremsstrahlung rates based on modern nuclear interactions for proto-neutron star cooling and the corresponding neutrino emission. We find that despite a reduction of the bremsstrahlung emission by a factor of 2-5 in the neutrinospheric region, models with the improved treatment exhibit only â‰_s105 % changes of the neutrino luminosities and an increase of â‰_s100.7 MeV of the average energies of the radiated neutrino spectra, with the largest effects for the antineutrinos of all flavors and at late times. Overall, the proto-neutron star cooling evolution is slowed down modestly by â‰_s100.5 - 1 s .

Information

Published
2016 as article (english)
prd, 94, 8 - page(s): 083009
Contact
PD Dr. Hans-Thomas Janka
Type
theoretical work
Links
pdf
ads
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Related to the research area(s):
G
e-Print
1608.05037

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