arXiv · nucl-th/9608054
Magnetically Catalyzed Fusion
Abstract
We calculate the reaction cross-sections for the fusion of hydrogen and deuterium in strong magnetic fields as are believed to exist in the atmospheres of neutron stars. We find that in the presence of a strong magnetic field ($B \gsim 10^{12}$G), the reaction rates are many orders of magnitude higher than in the unmagnetized case. The fusion of both protons and deuterons are important over a neutron star's lifetime for ultrastrong magnetic fields ($B \sim 10^{16}$G). The enhancement may have dramatic effects on thermonuclear runaways and bursts on the surfaces of neutron stars.
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Jeremy S. Heyl, Lars Hernquist. 1996-08-25. Magnetically Catalyzed Fusion. https://doi.org/10.1103/physrevc.54.2751
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