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Entaglement and communication in digital qubits using FPGAs Cover

Entaglement and communication in digital qubits using FPGAs

Open Access
|Jul 2023

References

  1. V. Hlukhov, “FPGA based digital quantum computer verification,” 2020 IEEE 11th International Conference on Dependable Systems, Services and Technologies (DESSERT), 05 2020.
  2. A. Harrow, P. Hayden, and D. Leung, “Superdense coding of quantum states,” Physical review letters, vol. 92, no. 18, p. 187901, 2004.
  3. J. C. Bardin, D. H. Slichter, and D. J. Reilly, “Microwaves in quantum computing,” IEEE Journal of Microwaves, vol. 1, pp. 403–427, 2021.
  4. V. Hlukhov, “Digital qubits for fpga-based homogenous quantum coprocessor,” 2021 11th IEEE International Conference on Intelligent Data Acquisition and Advanced Computing Systems: Technology and Applications (IDAACS), 09 2021.
  5. V. Hlukhov and B. Havano, “Fpga-based digital quantum coprocessor,” Advances in Cyber-Physical Systems, vol. 3, pp. 67–83, 11 2018.
  6. G. Marsaglia, “Xorshift rngs,” Journal of Statistical Software, vol. 8, 2003.
  7. S. Vigna, “Further scramblings of marsaglia’s xorshift generators,” Journal of Computational and Applied Mathematics, vol. 315, pp. 175–181, 05 2017.
  8. P. Haddad, V. Fischer, F. Bernard, and J. Nicolai, “A physical approach for stochastic modeling of tero-based trng,” Lecture Notes in Computer Science, pp. 357–372, 2015.
  9. M. K. Mandal and B. C. Sarkar, “Ring oscillators: Characteristics and applications,” Indian Journal of Pure Applied Physics, vol. 48, pp. 136–145, 2010.
  10. D. V. Gadre, S. Gupta, D. V. Gadre, and S. Gupta, “Universal asynchronous receiver and transmitter (uart),” Getting Started with Tiva ARM Cortex M4 Microcontrollers: A Lab Manual for Tiva LaunchPad Evaluation Kit, pp. 151–167, 2018.
  11. M. A. Nielsen and I. L. Chuang, Quantum computation and quantum information. Cambridge Cambridge University Press, 2019.
  12. I. Glendinning, “The Bloch sphere,” QIA Meeting, Research Gate, 2005
  13. C. P. Williams and C. P. Williams, “Quantum gates,” Explorations in Quantum Computing, pp. 51–122, 2011.
  14. V. Hlukhov and B. Havano, “Principles of digital quantum coprocessor based on a fpga, which operates under the control of a classical computer,” 2019 9th International Conference on Advanced Computer Information Technologies (ACIT), 06 2019.
  15. H. M. Waidyasooriya, H. Oshiyama, Y. Kurebayashi, M. Hariyama, and M. Ohzeki, “A scalable emulator for quantum fourier transform using multiple-fpgas with high-bandwidth-memory,” IEEE Access, vol. 10, pp. 65103–65117, 2022.
  16. W. Li and X. Yang, “A parallel and reconfigurable united architecture for fibonacci and galois lfsr,” 2015 7th International Conference on Intelligent Human-Machine Systems and Cybernetics, 08 2015.
  17. L. Hales and S. Hallgren, “An improved quantum fourier transform algorithm and applications,” in Proceedings 41st Annual Symposium on Foundations of Computer Science, pp. 515–525, IEEE, 2000.
  18. I. Bautista, V. Kreinovich, O. Kosheleva, and H. P. Nguyen, “Why it is sufficient to have real-valued amplitudes in quantum computing,” in Soft Computing: Biomedical and Related Applications, pp. 131–136, Springer, 2021.
  19. I. Vasyltsov, E. Hambardzumyan, Y.-S. Kim, and B. Karpinskyy, “Fast digital trng based on metastable ring oscillator,” Cryptographic Hardware and Embedded Systems – CHES 2008, pp. 164–180.
  20. “7 series fpgas and zynq-7000 soc xadc dual 12-bit 1 msps analog-todigital converter user guide”, UG480, version 1.11, 2022
  21. “ESP8266 Technical Reference”, version 1.7, Expressif, 2020.
  22. J. Price, T. Goble, “10 – signals and noise,” Telecommunications Enigineer’s Referencebook (F. Mazda, ed.), pp. 10-1-10-15, Butterworth-Heinemann, 1993.
  23. “Pcb design and circuit simulator software - proteus.”
  24. A. L. Rukhin, N. I. O. Standards, and T. (U.S, A Statistical Test Suite for Random and Pseudorandom Number Generators for Cryptographic Applications. U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology ; Washington, D.C, 2010.
  25. S. K. Ang, “Nist randomness testsuit,” 08 2022.
  26. C. Leitchi, “pySerial Documentation”, Release 3.4, Pyserial, 2021.
  27. N. Zou, “Quantum entanglement and its application in quantum communication,” Journal of Physics: Conference Series, vol. 1827, p. 012120, 03 2021.
  28. S. Gorn, R. W. Bemer, and J. Green, “American standard code for information interchange,” Communications of the ACM, vol. 6, no. 8, pp. 422–426, 1963.
DOI: https://doi.org/10.2478/jee-2023-0021 | Journal eISSN: 1339-309X | Journal ISSN: 1335-3632
Language: English
Page range: 154 - 166
Submitted on: Feb 26, 2023
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Published on: Jul 22, 2023
In partnership with: Paradigm Publishing Services
Publication frequency: 6 issues per year

© 2023 Bhuvan Hawargi, K B Akshay, Kaustav Bhowmick, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.