The Parity Flow Formalism: Tracking Quantum Information Throughout Computation

Fuente: arXiv
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Bibliographic Details
Main Authors: Klaver, Berend, Ludwig, Katharina, Messinger, Anette, Rombouts, Stefan M. A., Fellner, Michael, Ender, Kilian, Lechner, Wolfgang
Format: Preprint
Published: 2025
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author Klaver, Berend
Ludwig, Katharina
Messinger, Anette
Rombouts, Stefan M. A.
Fellner, Michael
Ender, Kilian
Lechner, Wolfgang
author_facet Klaver, Berend
Ludwig, Katharina
Messinger, Anette
Rombouts, Stefan M. A.
Fellner, Michael
Ender, Kilian
Lechner, Wolfgang
contents We propose the Parity Flow formalism, a method for tracking the information flow in quantum circuits. This method adds labels to quantum circuit diagrams such that the action of Clifford gates can be understood as a recoding of quantum information. The action of non-Clifford gates in the encoded space can be directly deduced from those labels without backtracking. An application of flow tracking is to design resource-efficient quantum circuits by changing any present encoding via a simple set of rules. Finally, the Parity Flow formalism can be used in combination with stabilizer codes to further reduce quantum circuit depth and to reveal additional operations that can be implemented in parallel.
format Preprint
id arxiv_https___arxiv_org_abs_2505_09468
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Parity Flow Formalism: Tracking Quantum Information Throughout Computation
Klaver, Berend
Ludwig, Katharina
Messinger, Anette
Rombouts, Stefan M. A.
Fellner, Michael
Ender, Kilian
Lechner, Wolfgang
Quantum Physics
We propose the Parity Flow formalism, a method for tracking the information flow in quantum circuits. This method adds labels to quantum circuit diagrams such that the action of Clifford gates can be understood as a recoding of quantum information. The action of non-Clifford gates in the encoded space can be directly deduced from those labels without backtracking. An application of flow tracking is to design resource-efficient quantum circuits by changing any present encoding via a simple set of rules. Finally, the Parity Flow formalism can be used in combination with stabilizer codes to further reduce quantum circuit depth and to reveal additional operations that can be implemented in parallel.
title The Parity Flow Formalism: Tracking Quantum Information Throughout Computation
topic Quantum Physics
url https://arxiv.org/abs/2505.09468