Interaction of relativistic elementary atoms with matter. I. General formulas

Stanislaw Mrowczyński
Phys. Rev. D 36, 1520 – Published 1 September 1987
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Abstract

The problem of the interaction of relativistic elementary atoms (Coulomb bound states of elementary particles such as positronium, pionium, etc.) with matter is studied in the reference frame where the atom is initially at rest. An atom of matter is treated as a spinless structureless fast particle. The amplitudes of elementary-atom interaction are derived in the Born approximation under the assumption that a momentum transfer to the atom does not significantly exceed an inverse Bohr radius of the atom. The elementary-atom excitation and ionization processes are considered. The transitions where the spin projection of the atom component is reversed are also studied. In particular the matrix elements for para-ortho and ortho-para transitions are given. The spin structure of the amplitudes is discussed in detail. The sum rules, which allow the calculation of the cross sections summed over atom final states are found. Finally the formulas of the atom interaction cross sections are presented.

  • Received 12 January 1987

DOI:https://doi.org/10.1103/PhysRevD.36.1520

©1987 American Physical Society

Authors & Affiliations

Stanislaw Mrowczyński

  • Laboratory of High Energies, Joint Institute for Nuclear Research, Head Post Office, P.O. Box 79, 101000 Moscow, Union of Soviet Socialist Republics

See Also

Interaction of relativistic elementary atoms with matter. II. Numerical results

Kirill G. Denisenko and Stanislaw Mrowczyński
Phys. Rev. D 36, 1529 (1987)

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Issue

Vol. 36, Iss. 5 — 1 September 1987

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