Scalable Experimental Bounds for Dicke and GHZ States Fidelities

Author:

Aktar Shamminuj1ORCID,Badawy Abdel-Hameed A.1ORCID,Bärtschi Andreas2ORCID,Eidenbenz Stephan2ORCID

Affiliation:

1. Klipsch School of Electrical and Computer Engineering, New Mexico State University, Las Cruces, NM, USA

2. CCS-3 Information Sciences, Los Alamos National Laboratory, Los Alamos, NM, USA

Publisher

ACM

Reference28 articles.

1. 2021. Qiskit: An Open-source Framework for Quantum Computing. https://doi.org/10.5281/zenodo.2573505 10.5281/zenodo.2573505 2021. Qiskit: An Open-source Framework for Quantum Computing. https://doi.org/10.5281/zenodo.2573505

2. 2021. Quantinuum H1 Powered by Honeywell. http://groups.csail.mit.edu/ 2021. Quantinuum H1 Powered by Honeywell. http://groups.csail.mit.edu/

3. A Divide-and-Conquer Approach to Dicke State Preparation

4. Andreas Bärtschi and Stephan Eidenbenz . 2019 . Deterministic Preparation of Dicke States. In 22nd International Symposium on Fundamentals of Computation Theory, FCT'19 . 126--139. https://doi.org/10.1007/978-3-030-25027-0_9 arXiv:1904.07358 10.1007/978-3-030-25027-0_9 Andreas Bärtschi and Stephan Eidenbenz. 2019. Deterministic Preparation of Dicke States. In 22nd International Symposium on Fundamentals of Computation Theory, FCT'19. 126--139. https://doi.org/10.1007/978-3-030-25027-0_9 arXiv:1904.07358

5. Andreas Bärtschi and Stephan Eidenbenz . 2022 . Short-Depth Circuits for Dicke State Preparation. In IEEE International Conference on Quantum Computing & Engineering QCE'22 . arXiv:2207.09998 To appear. Andreas Bärtschi and Stephan Eidenbenz. 2022. Short-Depth Circuits for Dicke State Preparation. In IEEE International Conference on Quantum Computing & Engineering QCE'22. arXiv:2207.09998 To appear.

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