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Methods Of Numerical Analysis Of One-Dimensional Two-Body Problem In Wheeler-Feynman Electrodynamics

Author

Listed:
  • S. V. KLIMENKO

    (Russian Center of Computing for Physics and Technology, 142284 Protvino, Russia)

  • I. N. NIKITIN

    (German National Research Center for Information Technology, 53754 Sankt Augustin, Germany)

  • W. F. URAZMETOV

    (Institute for High Energy Physics, 142284 Protvino, Russia)

Abstract

Numerical methods for solutions of differential equations with deviating arguments describing one-dimensional ultra-relativistic scattering of two identical charged particles in Wheeler-Feynman electrodynamics with half-retarded/half-advanced interaction are developed. Utilization of the methods for the physical problem analysis leads to the discovery of a bifurcation of solutions and breaking of their reflectional symmetry for particles asymptotic velocityv>0.937cin their center-of-mass frame.

Suggested Citation

  • S. V. Klimenko & I. N. Nikitin & W. F. Urazmetov, 1999. "Methods Of Numerical Analysis Of One-Dimensional Two-Body Problem In Wheeler-Feynman Electrodynamics," International Journal of Modern Physics C (IJMPC), World Scientific Publishing Co. Pte. Ltd., vol. 10(05), pages 905-920.
  • Handle: RePEc:wsi:ijmpcx:v:10:y:1999:i:05:n:s012918319900070x
    DOI: 10.1142/S012918319900070X
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