Causality in Pure Quantum Computation with Quantum Control
Kengo Hirata, Takeshi Tsukada
Abstract
Indefinite causal order is a characteristic phenomenon in quantum computation, with examples including the quantum SWITCH and the OCB process. Not all such processes are believed to be physically realizable: while some implementations of the quantum SWITCH have been proposed, the OCB process is suspected to be unrealizable. This difference in realizability is commonly attributed to constraints imposed by physical causality.
This paper studies such a causality issue in a higher-order setting, proposing a typed lambda calculus with quantum control and its categorical semantics. Our calculus extends pure quantum computation with higher-order functions and quantum conditional branching, and it is equipped with a type system based on intuitionistic BV logic to enforce causality. We also present a novel model that is closely related to the Caus construction, by which we prove that some physically-unrealizable processes are not definable in our language.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext d68aee04-4244-4d53-8300-055ff6918939Cited by top-tier papers1
Ask how each one uses itBuilds on2
Related papers
- Quantum Control Machine: The Limits of Control Flow in Quantum ProgrammingCharles Yuan, Agnes Villanyi, Michael CarbinOOPSLA 2024 · 9 citations
- Enriched Presheaf Model of Quantum FPCTakeshi Tsukada, Kazuyuki AsadaPOPL 2024 · 6 citations
- Semantics for variational Quantum programmingXiaodong Jia, Andre Kornell, Bert Lindenhovius, Michael W. Mislove et al.POPL 2022 · 15 citations
- Linear Dependent Type Theory for Quantum Programming Languages: Extended AbstractPeng Fu, Kohei Kishida, Peter SelingerLICS 2020 · 23 citations
- Mechanized logical relations for termination-insensitive noninterferenceSimon Oddershede Gregersen, Johan Bay, Amin Timany, Lars BirkedalPOPL 2021 · 14 citations
