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A new path-integral representation for the many-particle green function of the relativistic particles

Journal Article · · Theoretical and Mathematical Physics
DOI:https://doi.org/10.1007/BF02274038· OSTI ID:391337
;  [1]
  1. D.N. Lebedev Inst. of Physics, Moscow (Russian Federation)

Starting from the second quantized functional integral representation, the field path-integral representation for the total many-particle Green function for relativistic and nonrelativistic point-like charged Bose and Fermi particles in (3 + 1) or in (2 + 1) interacting via Maxwell or Chern-Simon fields is constructed and shown to be only an integral over the trajectories of the particles. The effective action depends on the coordinates and velocities of the particles, and is nonlocal in time due to causal interactions between the particles. In a static (nonrelativistic) approximation, the action is local in time and leads to expressions for the Hamiltonian for Coulomb interaction in (3 + 1), and for any one interaction in (2 + 1) dimensions. This path integral representation automatically includes the usual connection between spin and statistics for the cases of an infinite flat space and trivial topology for the manifold of the charged fields. Our results are generalized in the presence of an external magnetic field. It is shown how to take into account the contribution of the vacuum polarization effects within the framework of the approach.

Sponsoring Organization:
USDOE
OSTI ID:
391337
Journal Information:
Theoretical and Mathematical Physics, Journal Name: Theoretical and Mathematical Physics Journal Issue: 2 Vol. 103; ISSN 0040-5779; ISSN TMPHAH
Country of Publication:
United States
Language:
English

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