Handling non-unitaries in quantum circuit equivalence checking

Author:

Burgholzer Lukas1,Wille Robert2

Affiliation:

1. Johannes Kepler University Linz, Austria

2. Technical University of Munich, Germany

Funder

European Research Council

Publisher

ACM

Reference45 articles.

1. A. W. Cross , OpenQASM 3: A broader and deeper quantum assembly language , 2021 . arXiv: 2104.14722. A. W. Cross et al., OpenQASM 3: A broader and deeper quantum assembly language, 2021. arXiv: 2104.14722.

2. IBM Quantum "Quantum circuits get a dynamic upgrade with the help of concurrent classical computation " 2021. [Online]. Available: https://www.ibm.com/blogs/research/2021/02/quantum-phase-estimation/. IBM Quantum "Quantum circuits get a dynamic upgrade with the help of concurrent classical computation " 2021. [Online]. Available: https://www.ibm.com/blogs/research/2021/02/quantum-phase-estimation/.

3. S. Yamashita and I. L. Markov , " Fast equivalence-checking for quantum circuits," in Int'l Symp. on Nanoscale Architectures , 2010 . S. Yamashita and I. L. Markov, "Fast equivalence-checking for quantum circuits," in Int'l Symp. on Nanoscale Architectures, 2010.

4. L. Burgholzer and R. Wille , " Advanced equivalence checking for quantum circuits," IEEE Trans. on CAD of Integrated Circuits and Systems , 2021 . L. Burgholzer and R. Wille, "Advanced equivalence checking for quantum circuits," IEEE Trans. on CAD of Integrated Circuits and Systems, 2021.

5. L. Burgholzer , R. Raymond , and R. Wille , " Verifying results of the IBM Qiskit quantum circuit compilation flow," in Int'l Conf. on Quantum Computing and Engineering , 2020 . L. Burgholzer, R. Raymond, and R. Wille, "Verifying results of the IBM Qiskit quantum circuit compilation flow," in Int'l Conf. on Quantum Computing and Engineering, 2020.

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