The Power of Simulation for Equivalence Checking in Quantum Computing
Lukas Burgholzer, Robert Wille
Abstract
The rapid rate of progress in the physical realization of quantum computers sparked the development of elaborate design flows for quantum computations on such devices. Each stage of these flows comes with its own representation of the intended functionality. Ensuring that each design step preserves this intended functionality is of utmost importance. However, existing solutions for equivalence checking of quantum computations heavily struggle with the complexity of the underlying problem and, thus, no conclusions on the equivalence may be reached with reasonable efforts in many cases. In this work, we uncover the power of simulation for equivalence checking in quantum computing. We show that, in contrast to classical computing, it is in general not necessary to compare the complete representation of the respective computations. Even small errors frequently affect the entire representation and, thus, can be detected within a couple of simulations. The resulting equivalence checking flow substantially improves upon the state of the art by drastically accelerating the detection of errors or providing a highly probable estimate of the operations' equivalence.
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 d227ba79-8ca3-4686-b44f-df7898e5ee14Cited by top-tier papers2
- Approximate Equivalence Checking of Noisy Quantum CircuitsXin Hong, Mingsheng Ying, Yuan Feng, Xiangzhen Zhou et al.DAC 2021 · 27 citations
- BQSim: GPU-accelerated Batch Quantum Circuit Simulation using Decision DiagramShui Jiang, Yi-Hua Chung, Chih-Chun Chang, Tsung-Yi Ho et al.ASPLOS 2025 · 9 citations
Related papers
- Equivalence checking paradigms in quantum circuit design: a case studyTom Peham, Lukas Burgholzer, Robert WilleDAC 2022 · 16 citations
- Handling non-unitaries in quantum circuit equivalence checkingLukas Burgholzer, Robert WilleDAC 2022 · 14 citations
- Just Like the Real Thing: Fast Weak Simulation of Quantum ComputationStefan Hillmich, Igor L. Markov, Robert WilleDAC 2020 · 25 citations
- ZXNet: ZX Calculus-Driven Graph Neural Network Framework for Quantum Circuit Equivalence CheckingNavnil Choudhury, Ameya S. Bhave, Kanad BasuDAC 2025 · 2 citations
- Accurate BDD-based unitary operator manipulation for scalable and robust quantum circuit verificationChun-Yu Wei, Yuan-Hung Tsai, Chiao-Shan Jhang, Jie-Hong R. JiangDAC 2022 · 28 citations
