Simulation of positive operator-valued measures and quantum instruments via quantum state-preparation algorithms

Douglas F. Pinto, Marcelo S. Zanetti, Marcos L. W. Basso, and Jonas Maziero
Phys. Rev. A 107, 022411 – Published 9 February 2023

Abstract

In Phys. Rev. A 100, 062317 (2019), the authors reported an algorithm to implement, in a circuit-based quantum computer, a general quantum measurement (GQM) of a two-level quantum system, a qubit. Even though their algorithm seems right, its application involves the solution of an intricate nonlinear system of equations to obtain the angles determining the quantum circuit to be implemented for the simulation. In this article, we identify and discuss a simple way to circumvent this issue and implement GQMs on any d-level quantum system through quantum state preparation algorithms. Using some examples for one qubit, one qutrit, and two qubits, we illustrate the easy of application of our protocol. In addition, we show how one can utilize our protocol for simulating quantum instruments, for which we also give an example. All our examples are demonstrated using IBM's quantum processors.

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  • Received 29 November 2022
  • Accepted 25 January 2023

DOI:https://doi.org/10.1103/PhysRevA.107.022411

©2023 American Physical Society

Physics Subject Headings (PhySH)

Quantum Information, Science & Technology

Authors & Affiliations

Douglas F. Pinto1,*, Marcelo S. Zanetti2,†, Marcos L. W. Basso3,‡, and Jonas Maziero1,§

  • 1Physics Department, Center for Natural and Exact Sciences, Federal University of Santa Maria, Roraima Avenue 1000, Santa Maria, Rio Grande do Sul, 97105-900, Brazil
  • 2Department of Electronics and Computing, Technology Center, Federal University of Santa Maria, Roraima Avenue 1000, Santa Maria, Rio Grande do Sul, 97105-900, Brazil
  • 3Center for Natural and Human Sciences, Federal University of the ABC, States Avenue 5001, Santo André, São Paulo, 09210-580, Brazil

  • *douglasfpinto@gmail.com
  • marcelo.zanetti@ufsm.br
  • marcoslwbasso@hotmail.com
  • §jonas.maziero@ufsm.br

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Vol. 107, Iss. 2 — February 2023

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