Relativistic electron beams in Coulomb-disordered media may undergo a BKT topological transition at critical thickness Lc, switching from algebraic to exponential decoherence via vortex unbinding in an effective 2D phase field.
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Possible Topological Decoherence Transition in Relativistic Electron Beams Propagating through Coulomb-Disordered Media
Relativistic electron beams in Coulomb-disordered media may undergo a BKT topological transition at critical thickness Lc, switching from algebraic to exponential decoherence via vortex unbinding in an effective 2D phase field.