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Quantum Advantage via Qubit Belief Propagation

Publication ,  Conference
Rengaswamy, N; Seshadreesan, KP; Guha, S; Pfister, HD
Published in: IEEE International Symposium on Information Theory Proceedings
June 1, 2020

Quantum technologies are maturing by the day and their near-term applications are now of great interest. Deep-space optical communication involves transmission over the pure-state classical-quantum channel. For optimal detection, a joint measurement on all output qubits is required in general. Since this is hard to realize, current (sub-optimal) schemes perform symbol-by-symbol detection followed by classical post-processing. In this paper we focus on a recently proposed belief propagation algorithm by Renes that passes qubit messages on the factor graph of a classical error-correcting code. More importantly, it only involves single-qubit Pauli measurements during the process. For an example 5-bit code, we analyze the involved density matrices and calculate the error probabilities on this channel. Then we numerically compute the optimal joint detection limit using the Yuen-Kennedy-Lax conditions and demonstrate that the calculated error probabilities for this algorithm appear to achieve this limit. This represents a first step towards achieveing quantum communication advantage. We verify our analysis using Monte-Carlo simulations in practice.

Duke Scholars

Published In

IEEE International Symposium on Information Theory Proceedings

DOI

ISSN

2157-8095

Publication Date

June 1, 2020

Volume

2020-June

Start / End Page

1824 / 1829
 

Citation

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Rengaswamy, N., Seshadreesan, K. P., Guha, S., & Pfister, H. D. (2020). Quantum Advantage via Qubit Belief Propagation. In IEEE International Symposium on Information Theory Proceedings (Vol. 2020-June, pp. 1824–1829). https://doi.org/10.1109/ISIT44484.2020.9174494
Rengaswamy, N., K. P. Seshadreesan, S. Guha, and H. D. Pfister. “Quantum Advantage via Qubit Belief Propagation.” In IEEE International Symposium on Information Theory Proceedings, 2020-June:1824–29, 2020. https://doi.org/10.1109/ISIT44484.2020.9174494.
Rengaswamy N, Seshadreesan KP, Guha S, Pfister HD. Quantum Advantage via Qubit Belief Propagation. In: IEEE International Symposium on Information Theory Proceedings. 2020. p. 1824–9.
Rengaswamy, N., et al. “Quantum Advantage via Qubit Belief Propagation.” IEEE International Symposium on Information Theory Proceedings, vol. 2020-June, 2020, pp. 1824–29. Scopus, doi:10.1109/ISIT44484.2020.9174494.
Rengaswamy N, Seshadreesan KP, Guha S, Pfister HD. Quantum Advantage via Qubit Belief Propagation. IEEE International Symposium on Information Theory Proceedings. 2020. p. 1824–1829.

Published In

IEEE International Symposium on Information Theory Proceedings

DOI

ISSN

2157-8095

Publication Date

June 1, 2020

Volume

2020-June

Start / End Page

1824 / 1829