Cobble: Compiling Block Encodings for Quantum Computational Linear Algebra
Charles Yuan
摘要
Quantum algorithms for computational linear algebra promise up to exponential speedups for applications such as simulation and regression, making them prime candidates for hardware realization. But these algorithms execute in a model that cannot efficiently store matrices in memory like a classical algorithm does, instead requiring developers to implement complex expressions for matrix arithmetic in terms of correct and efficient quantum circuits. Among the challenges for the developer is navigating a cost model in which conventional optimizations for linear algebra, such as subexpression reuse, can be inapplicable or unprofitable.
In this work, we present Cobble, a language for programming with quantum computational linear algebra. Cobble enables developers to express and manipulate the quantum representations of matrices, known as block encodings, using high-level notation that automatically compiles to correct quantum circuits. Cobble features analyses that compute the time and space usage of programs, as well as optimizations that reduce overhead and generate efficient circuits using state-of-the-art techniques such as the quantum singular value transformation. We evaluate Cobble on benchmark kernels for simulation, regression, search, and other applications, showing 2.6×-25.4× speedups on these benchmarks compared to the unoptimized baseline.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
它引用的顶会 Paper17
- 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
- A verified optimizer for Quantum circuitsKesha Hietala, Robert Rand, Shih-Han Hung, Xiaodi Wu 等POPL 2021 · 被引用 111 次
- Quartz: superoptimization of Quantum circuitsMingkuan Xu, Zikun Li, Oded Padon, Sina Lin 等PLDI 2022 · 被引用 57 次
- An Automata-Based Framework for Verification and Bug Hunting in Quantum CircuitsYu-Fang Chen, Kai-Min Chung, Ondrej Lengál, Jyun-Ao Lin 等PLDI 2023 · 被引用 41 次
- Synthesizing Quantum-Circuit OptimizersAmanda Xu, Abtin Molavi, Lauren Pick, Swamit Tannu 等PLDI 2023 · 被引用 41 次
相关 Paper
- Quantum Circuits Are Just a PhaseChris Heunen, Louis Lemonnier, Christopher McNally, Alex RicePOPL 2026
- CoLA: Exploiting Compositional Structure for Automatic and Efficient Numerical Linear AlgebraAndres Potapczynski, Marc Finzi, Geoff Pleiss, Andrew Gordon WilsonNeurIPS 2023 · 被引用 13 次
- Twist: sound reasoning for purity and entanglement in Quantum programsCharles Yuan, Christopher McNally, Michael CarbinPOPL 2022 · 被引用 30 次
- Compositional Quantum Control Flow with Efficient Compilation in QunityMikhail Mints, Finn Voichick, Leonidas Lampropoulos, Robert RandOOPSLA 2025
- Modular Synthesis of Efficient Quantum UncomputationHristo Venev, Timon Gehr, Dimitar Dimitrov, Martin T. VechevOOPSLA 2024 · 被引用 5 次
