RE: RE: Physical-Layer Adversarial Information Theory
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RE: Physical-Layer Adversarial Information Theory

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9. References for Physical-Layer Adversarial Information Theory

  1. Shannon, C. E. (1948). "A Mathematical Theory of Communication." The Bell System Technical Journal, 27(3), 379–423; 27(4), 623–656.
  2. Landauer, R. (1961). "Irreversibility and Heat Generation in the Computing Process." IBM Journal of Research and Development, 5(3), 183–191.
  3. Turing, A. M. (1936). "On Computable Numbers, with an Application to the Entscheidungsproblem." Proceedings of the London Mathematical Society, 2(42), 230–265.
  4. Bash, B. A., Goeckel, D., & Towsley, D. (2013). "Limits of Reliable and Covert Communication Over Additive White Gaussian Noise Channels." IEEE Journal on Selected Areas in Communications, 31(9), 1921–1930.
  5. Cachin, C. (1998). "An Information-Theoretic Model for Steganography." Information and Computation, 192(1), 41–56.
  6. Wyner, A. D. (1975). "The Wire-Tap Channel." The Bell System Technical Journal, 54(8), 1355–1387.
  7. Ker, A. D. (2007). "A Capacity Result for Batch Steganography." IEEE Signal Processing Letters, 14(8), 525–528.
  8. Bennett, C. H. (1973). "Logical Reversibility of Computation." IBM Journal of Research and Development, 17(6), 525–532.
  9. IEEE Computer Society. (2019). IEEE Standard for Floating-Point Arithmetic (IEEE Std 754-2019). IEEE.
  10. Fowler, A. G., Mariantoni, M., Martinis, J. M., & Cleland, A. N. (2012). "Surface codes: Towards practical large-scale quantum computation." Physical Review A, 86(3), 032324.
  11. Goldberg, D. (1991). "What Every Computer Scientist Should Know About Floating-Point Arithmetic." ACM Computing Surveys, 23(1), 5–48.
  12. Motzoi, F., Gambetta, J. M., Rebentrost, P., & Wilhelm, F. K. (2009). "Simple Pulses for Elimination of Leakage in Weakly Anharmonic Qubits." Physical Review Letters, 103(11), 110501.
  13. Gustafson, J. L. (2015). The End of Error: Unum Computing. CRC Press.
  14. Cover, T. M., & Thomas, J. A. (2006). Elements of Information Theory (2nd ed.). John Wiley & Sons.
  15. Katz, J., & Lindell, Y. (2020). Introduction to Modern Cryptography (3rd ed.). CRC Press.
  16. Santhi, N., & Vardy, A. (2008). "On the Capacity of Covert Channels." IEEE Transactions on Information Theory, 54(6), 2530–2544.
  17. Nyquist, H. (1928). "Thermal Agitation of Electric Charge in Conductors." Physical Review, 32(1), 110–113.
  18. Johnson, J. B. (1928). "Thermal Agitation of Electricity in Conductors." Physical Review, 32(1), 97–109.
  19. Pinsker, M. S. (1964). Information and Information Stability of Random Variables and Processes. Holden-Day.
@jacobpeacock: 9. References | Ecency