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Narayanan Rengaswamy (Member, IEEE) received the M.S. degree in electrical engineering from Texas A&M University, in December 2015, and the Ph.D. degree in electrical engineering from Duke University, in May 2020, under the supervision of Prof. Henry Pfister and Prof. Robert Calderbank. He is currently a Post-Doctoral Research Associate with Prof. Bane Vasic at the University of Arizona, where he is involved in the error correction aspects of the NSF funded Center for Quantum Networks (CQN) and DoE funded Superconducting Quantum Materials and Systems (SQMS) Center. His dissertation (https://arxiv.org/abs/2004.06834) focused on developing systematic methods to construct fault-tolerant logical operations on stabilizer quantum error correcting codes and on optimally decoding classical codes over the quantum pure-state channel that arises in free-space optical communications. He worked with Prof. Henry Pfister on cyclic polar codes at Texas A&M University. In summer 2015, he was a Research Intern at Alcatel-Lucent Bell Labs, Stuttgart, Germany, where he analyzed the finite-length performance of spatially-coupled LDPC codes on the binary erasure channel, under the supervision of Dr. Laurent Schmalen and Dr. Vahid Aref. His general research interests are in classical and quantum information theory, coding theory, compressed sensing, and statistical inference problems. He is passionate about discovering connections between the classical and quantum information processing worlds.
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arxiv(2024)
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EPJ QUANTUM TECHNOLOGYno. 1 (2023): 1-21
2023 IEEE International Conference on Quantum Computing and Engineering (QCE) (2023): 1165-1171
2023 12th International Symposium on Topics in Coding (ISTC)pp.1-5, (2023)
2023 12th International Symposium on Topics in Coding (ISTC)pp.1-5, (2023)
IEEE BITS the Information Theory Magazineno. 3 (2022): 20-32
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