English

Anyons in the Operational Formalism

Quantum Physics 2015-06-23 v1 Mathematical Physics math.MP History and Philosophy of Physics

Abstract

The operational formalism to quantum mechanics seeks to base the theory on a firm foundation of physically well-motivated axioms [1]. It has succeeded in deriving the Feynman rules [2] for general quantum systems. Additional elaborations have applied the same logic to the question of identical particles, confirming the so-called Symmetrization Postulate [3]: that the only two options available are fermions and bosons [4,5]. However, this seems to run counter to results in two-dimensional systems, which allow for anyons, particles with statistics which interpolate between Fermi-Dirac and Bose-Einstein (see [6] for a review). In this talk we will show that the results in two dimensions can be made compatible with the operational results. That is, we will show that anyonic behavior is a result of the topology of the space in two dimensions [7], and does not depend on the particles being identical; but that nevertheless, if the particles are identical, the resulting system is still anyonic.

Keywords

Cite

@article{arxiv.1410.8080,
  title  = {Anyons in the Operational Formalism},
  author = {Klil H. Neori and Philip Goyal},
  journal= {arXiv preprint arXiv:1410.8080},
  year   = {2015}
}

Comments

Presented at MaxEnt 2014, to be included in proceedings. 9 pages, 7 figures rendered in PGF/TikZ

R2 v1 2026-06-22T06:40:36.094Z