Physical Review Research (Jul 2024)

Reductive quantum phase estimation

  • Nicholas J. C. Papadopoulos,
  • Jarrod T. Reilly,
  • John Drew Wilson,
  • Murray J. Holland

DOI
https://doi.org/10.1103/PhysRevResearch.6.033051
Journal volume & issue
Vol. 6, no. 3
p. 033051

Abstract

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Estimating a quantum phase is a necessary task in a wide range of fields of quantum science. To accomplish this task, two well-known methods have been developed in distinct contexts, namely, Ramsey interferometry (RI) in atomic and molecular physics and quantum phase estimation (QPE) in quantum computing. We demonstrate that these canonical examples are instances of a larger class of phase estimation protocols, which we call reductive quantum phase estimation (RQPE) circuits. Here, we present an explicit algorithm that allows one to create an RQPE circuit. This circuit distinguishes an arbitrary set of phases with a smaller number of qubits and unitary applications, thereby solving a general class of quantum hypothesis testing to which RI and QPE belong. We further demonstrate a tradeoff between measurement precision and phase distinguishability, which allows one to tune the circuit to be optimal for a specific application.