Quantum Circuits Are Just a Phase
Chris Heunen, Louis Lemonnier, Christopher McNally, Alex Rice
摘要
Quantum programs today are written at a low level of abstraction-quantum circuits akin to assembly languages-and the unitary parts of even advanced quantum programming languages essentially function as circuit description languages. This state of affairs impedes scalability, clarity, and support for higher-level reasoning. More abstract and expressive quantum programming constructs are needed.
To this end, we introduce a simple syntax for generating unitaries from "just a phase"; we combine a (global) phase operation that captures phase shifts with a quantum analogue of the "if let" construct that captures subspace selection via pattern matching. This minimal language lifts the focus from gates to eigendecomposition, conjugation, and controlled unitaries; common building blocks in quantum algorithm design.
We demonstrate several aspects of the expressive power of our language in several ways. Firstly, we establish that our representation is universal by deriving a universal quantum gate set. Secondly, we show that important quantum algorithms can be expressed naturally and concisely, including Grover's search algorithm, Hamiltonian simulation, Quantum Fourier Transform, Quantum Signal Processing, and the Quantum Eigenvalue Transformation. Furthermore, we give clean denotational semantics grounded in categorical quantum mechanics. Finally, we implement a prototype compiler that efficiently translates terms of our language to quantum circuits, and prove that it is sound with respect to these semantics. Collectively, these contributions show that this construct offers a principled and practical step toward more abstract and structured quantum programming.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了最后一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper3
- RapunSL: Untangling Quantum Computing with Separation, Linear Combination and MixingYusuke Matsushita, Kengo Hirata, Ryo Wakizaka, Emanuele D'OsualdoPOPL 2026 · 被引用 1 次
- Quantum Control and General Recursion Beyond the Unitary CaseKathleen Barsse, Romain Péchoux, Simon PerdrixLICS 2026
- Granthi: Higher-Order Quantum Programming via Unitary WiringSamson Abramsky, Radha JagadeesanOOPSLA 2026
它引用的顶会 Paper10
- Silq: a high-level quantum language with safe uncomputation and intuitive semanticsBenjamin Bichsel, Maximilian Baader, Timon Gehr, Martin T. VechevPLDI 2020 · 被引用 145 次
- Qunity: A Unified Language for Quantum and Classical ComputingFinn Voichick, Liyi Li, Robert Rand, Michael HicksPOPL 2023 · 被引用 35 次
- Proto-Quipper with Dynamic LiftingPeng Fu, Kohei Kishida, Neil J. Ross, Peter SelingerPOPL 2023 · 被引用 17 次
- A Complete Equational Theory for Quantum CircuitsAlexandre Clément, Nicolas Heurtel, Shane Mansfield, Simon Perdrix 等LICS 2023 · 被引用 14 次
- Quantum Eigenvalue ProcessingGuang Hao Low, Yuan SuFOCS 2024 · 被引用 12 次
相关 Paper
- Compositional Quantum Control Flow with Efficient Compilation in QunityMikhail Mints, Finn Voichick, Leonidas Lampropoulos, Robert RandOOPSLA 2025
- A Case for Synthesis of Recursive Quantum Unitary ProgramsHaowei Deng, Runzhou Tao, Yuxiang Peng, Xiaodi WuPOPL 2024 · 被引用 10 次
- Hadamard-Pi: Equational Quantum ProgrammingWang Fang, Chris Heunen, Robin KaarsgaardPOPL 2026
- Optimizing Quantum Circuits, Fast and SlowAmanda Xu, Abtin Molavi, Swamit Tannu, Aws AlbarghouthiASPLOS 2025 · 被引用 8 次
- QbC: Quantum Correctness by ConstructionAnurudh Peduri, Ina Schaefer, Michael WalterOOPSLA 2025 · 被引用 3 次
