H2+ ion in strong magnetic field: a variational study

Astronomy and Astrophysics – Astrophysics

Scientific paper

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RevTeX, 15 pages including 7 postscript figures (uuencoded) Title changed, several clarifying sentences added, Typos corrected

Scientific paper

10.1103/PhysRevA.56.4496

Using a single trial function we perform an accurate calculation of the ground state $1\sigma_g$ of the hydrogenic molecular ion $H^+_2$ in a constant uniform magnetic field ranging $0-10^{13}$ G. We show that this trial function also makes it possible to study the negative parity ground state $1\sigma_u$. We obtain that over the whole range of magnetic fields studied, the calculated binding energies are in most cases larger than binding energies obtained previously by other authors using different methods.

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