Quantum tomography and Schwinger’s picture of quantum mechanics*

Author:

Ciaglia F MORCID,Di Cosmo FORCID,Ibort AORCID,Marmo GORCID

Abstract

Abstract In this paper the problem of tomographic reconstruction of states is investigated within the so-called Schwinger’s picture of quantum mechanics in which a groupoid is associated with every quantum system. The attention is focussed on spin tomography: in this context the groupoid of interest is the groupoid of pairs over a finite set. In a nutshell, this groupoid is made up of transitions between all possible pairs of outcomes belonging to a finite set. In addition, these transitions possess a partial composition rule, generalizing the notion of groups. The main goal of the paper consists in providing a reconstruction formula for states on the groupoid-algebra associated with the observables of the system. Using the group of bisections of this groupoid, which are special subsets in one-to-one correspondence with the outcomes, a frame is defined and it is used to prove the validity of the tomographic reconstruction. The special case of the set of outcomes being the set of integers modulo n, with n odd prime, is considered in detail. In this case the subgroup of discrete affine linear transformations, whose graphs are linear subspaces of the groupoid, provides a quorum in close analogy with the continuous case.

Funder

Madrid Government

Comunidad de Madrid

Conex Plus programme

MINECO

Severo Ochoa Programme

Regional Programme of Research and Technological Innovation

Publisher

IOP Publishing

Subject

General Physics and Astronomy,Mathematical Physics,Modeling and Simulation,Statistics and Probability,Statistical and Nonlinear Physics

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1. Connecting Continuous and Discrete Wigner Functions Via GKP Encoding;International Journal of Theoretical Physics;2024-02-08

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