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Neutron Star Kicks and Supernova Asymmetry
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Observations over the last decade have shown that neutron stars receive a large kick velocity (of order a hundred to a thousand km/s) at birth. The physical origin of the kicks and the related supernova asymmetry is one of the central unsolved mysteries of supernova research. We review the physics of different kick mechanisms, including hydrodynamically driven, neutrino -- magnetic field driven, and electromagnetically driven kicks. The viabilities of the different kick mechanisms are directly related to the other key parameters characterizing nascent neutron stars, such as the initial magnetic field and the initial spin. Recent observational constraints on kick mechanisms are also discussed.
Forward citations
Cited by 2 Pith papers
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Mixed origins: strong natal kicks for some black holes and none for others
A Gaia-based kinematic comparison shows black holes have mixed natal kicks: several are much faster than 90% of their local stars, while others match the local population, supporting both strong-kick and weak-kick for...
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