Indistinguishability in general probabilistic theories

Fuente: arXiv
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Bibliographic Details
Main Authors: Selby, John H., Wright, Victoria J., Farkas, Máté, Karczewski, Marcin, Sainz, Ana Belén
Format: Preprint
Published: 2024
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author Selby, John H.
Wright, Victoria J.
Farkas, Máté
Karczewski, Marcin
Sainz, Ana Belén
author_facet Selby, John H.
Wright, Victoria J.
Farkas, Máté
Karczewski, Marcin
Sainz, Ana Belén
contents The existence of indistinguishable quantum particles provides an explanation for various physical phenomena we observe in nature. We lay out a path for the study of indistinguishable particles in general probabilistic theories (GPTs) via two frameworks: the traditional GPT framework and the diagrammatic framework of process theories. In the first approach we define different types of indistinguishable particle by the orbits of symmetric states under transformations. In the diagrammatic approach, we find a decomposition of the symmetrised state space using two key constructions from category theory: the biproduct completion and the Karoubi envelope. In both cases for pairs of indistinguishable particles in quantum theory we recover bosons and fermions.
format Preprint
id arxiv_https___arxiv_org_abs_2412_20963
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Indistinguishability in general probabilistic theories
Selby, John H.
Wright, Victoria J.
Farkas, Máté
Karczewski, Marcin
Sainz, Ana Belén
Quantum Physics
The existence of indistinguishable quantum particles provides an explanation for various physical phenomena we observe in nature. We lay out a path for the study of indistinguishable particles in general probabilistic theories (GPTs) via two frameworks: the traditional GPT framework and the diagrammatic framework of process theories. In the first approach we define different types of indistinguishable particle by the orbits of symmetric states under transformations. In the diagrammatic approach, we find a decomposition of the symmetrised state space using two key constructions from category theory: the biproduct completion and the Karoubi envelope. In both cases for pairs of indistinguishable particles in quantum theory we recover bosons and fermions.
title Indistinguishability in general probabilistic theories
topic Quantum Physics
url https://arxiv.org/abs/2412.20963