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Properties of condensed spin-aligned atomic hydrogen from variational calculations

✍ Scribed by L. J. Lantto; R. M. Nieminen


Book ID
104625664
Publisher
Springer US
Year
1979
Tongue
English
Weight
477 KB
Volume
37
Category
Article
ISSN
0022-2291

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✦ Synopsis


The optimal Jastrow-type ground-state wave function of spin-aligned atomic hydrogen is calculated using the pair potential of Kolos and Wolniewicz. The optimization is performed by solving the Euler equation in the hypernettedchain approximation. Accurate energies as well as pair-distribution functions are obtained. The Bose-Einstein condensate fraction is evaluated from the one-particle momentum distribution. The pair distribution function is also used to obtain stability criteria for the system and minimal values for the aligning magnetic field are calculated at low densities. The resulting values of the minimal aligning fields are considerably higher than those obtained previously.

1 + degrees Kelvin, in contrast to the 4.7 eV in the singlet x ~g, which is the ground state of the H2 molecule. In fact, the triplet attraction is so weak that 1


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✍ R. D. Etters; R. L. Danilowicz; R. W. Palmer πŸ“‚ Article πŸ“… 1978 πŸ› Springer US 🌐 English βš– 233 KB

The ground-state properties of bulk atomic hydrogen are calculated for the low-density gas, assuming that the atoms interact via the 3 + ,~u pair potential. The Monte Carlo technique is applied to a system consisting of 32 hydrogen atoms in a box, with periodic boundary conditions. These results are