Marek Perkowski

Affiliations: 
Electrical and Computer Engineering Portland State University, Portland, OR, United States 
Area:
Computer Science, Computer Engineering
Website:
https://www.pdx.edu/profile/exists?id=h8mp
Google:
"Marek Perkowski"
Bio:

Ph.D. 1980 Technical University of Warsaw (Poland).

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Publications

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Alasow A, Jin P, Perkowski M. (2022) Quantum Algorithm for Variant Maximum Satisfiability. Entropy (Basel, Switzerland). 24
Tsai E, Perkowski M. (2020) A Quantum Algorithm For Automata Encoding Facta Universitatis. Series Electronics and Energetics. 33: 169-215
Daraeizadeh S, Premaratne SP, Khammassi N, et al. (2020) Machine-learning-based three-qubit gate design for the Toffoli gate and parity check in transmon systems Physical Review A. 102
Li Z, Chen S, Song X, et al. (2017) Quantum Circuit Synthesis using a New Quantum Logic Gate Library of NCV Quantum Gates International Journal of Theoretical Physics. 56: 1023-1038
Rahman KC, Hammerstrom D, Li Y, et al. (2016) Methodology and design of a massively parallel memristive stateful IMPLY logic-based reconfigurable architecture Ieee Transactions On Nanotechnology. 15: 675-686
Tran L, Gronquist A, Perkowski M, et al. (2016) An improved factorization approach to reversible circuit synthesis based on EXORs of products of EXORs Proceedings of the International Symposium On Multiple-Valued Logic. 2016: 37-43
Perkowski M, Kerntopf P, Buller A, et al. (2016) Regular realization of symmetric functions using reversible logic Proceedings - Euromicro Symposium On Digital Systems Design: Architectures, Methods and Tools, Dsd 2001. 245-252
Aljafar M, Long P, Perkowski M. (2016) Memristor-Based Volistor Gates Compute Logic with Low Power Consumption Journal of Bionanoscience. 6: 214-234
Raghuvanshi A, Perkowski M. (2015) Logic synthesis and a generalized notation for memristor-realized material implication gates Ieee/Acm International Conference On Computer-Aided Design, Digest of Technical Papers, Iccad. 2015: 470-477
Lukac M, Shah D, Perkowski M, et al. (2014) Synthesis of quantum arrays from Kronecker Functional Lattice Diagrams Ieice Transactions On Information and Systems. 2262-2269
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