Variational calculation of ground-state energy of iron atoms and condensed matter in strong magnetic fields

Physics – Condensed Matter

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Calculus Of Variations, Chemical Bonds, Ground State, Iron, Magnetic Effects, Neutron Stars, Condensed Matter Physics, Electron Orbitals, Energy Methods, Field Strength, Magnetic Flux, Pulsars, Stellar Magnetic Fields

Scientific paper

Variational calculations of the binding energies of iron atoms and condensed matter in strong magnetic fields (greater than 10 to the 12th gauss). These calculations include the electron exchange energy. The cohesive energy of the condensed matter, which is the difference between these two binding energies, is of interest in pulsar theories and in the description of the surfaces of neutron stars. It is found that the cohesive energy ranges from 2.6 keV to 8.0 keV.

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