Neutronization of cold hydrogen in the presence of extremely strong magnetic fields

Statistics – Computation

Scientific paper

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Cold Gas, Hydrogen, Magnetic Effects, Neutrons, Nuclear Reactions, Stellar Magnetic Fields, Beta Particles, Electron Gas, Gas Density, Magnetic Flux, Protons, Pulsars, Quasars, Relativistic Particles

Scientific paper

An analytical expression is found which describes the relationship between the magnetic-field strength and the neutronization threshold of a high-density hydrogen gas. It is assumed that the magnetic field is constant and uniform, and that the hydrogen is at absolute zero. Extremely strong magnetic fields are taken to be those which significantly change the neutronization threshold of cold hydrogen. It is shown that in the presence of such fields, the characteristic oscillations of the chemical potential and related quantities, which normally occur in the presence of a magnetic field, disappear. A numerical computation shows that the neutronization threshold of cold hydrogen increases noticeably in the presence of magnetic fields greater than 174 trillion oersteds.

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