Method to determine which quantum operations can be realized with linear optics with a constructive implementation recipe

Juan Carlos Garcia-Escartin, Vicent Gimeno, and Julio José Moyano-Fernández
Phys. Rev. A 100, 022301 – Published 2 August 2019; Erratum Phys. Rev. A 108, 049901 (2023)

Abstract

The evolution of quantum light through linear optical devices can be described by the scattering matrix S of the system. For linear optical systems with m possible modes, the evolution of n input photons is given by a unitary matrix U=φm,M(S), derived from a known homomorphism, φm,M, which depends on the size of the resulting Hilbert space of the possible photon states, M. We present a method to decide whether a given unitary evolution U for n photons in m modes can be achieved with linear optics or not and the inverse transformation φm,M1 when the transformation can be implemented. Together with previous results, the method can be used to find a simple optical system which implements any quantum operation within the reach of linear optics. The results come from studying the adjoint map between the Lie algebras corresponding to the Lie groups of the relevant unitary matrices.

  • Received 18 January 2019
  • Revised 17 June 2019

DOI:https://doi.org/10.1103/PhysRevA.100.022301

©2019 American Physical Society

Physics Subject Headings (PhySH)

Quantum Information, Science & TechnologyAtomic, Molecular & OpticalGeneral Physics

Erratum

Authors & Affiliations

Juan Carlos Garcia-Escartin*

  • Universidad de Valladolid, Dpto. Teoría de la Señal e Ing. Telemática, Paseo Belén No. 15, 47011 Valladolid, Spain

Vicent Gimeno and Julio José Moyano-Fernández

  • Universitat Jaume I (UJI), Campus de Riu Sec, Institut Universitari de Matemàtiques i Aplicacions de Castelló, 12071 Castellón de la Plana, Spain.

  • *juagar@tel.uva.es
  • gimenov@mat.uji.es
  • moyano@uji.es

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Issue

Vol. 100, Iss. 2 — August 2019

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