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

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12. REFERENCES For: Physical-Layer Adversarial Information Theory: Adversarial Threat Dossier

  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. Wyner, A. D. (1975). The Wire-Tap Channel. The Bell System Technical Journal, 54(8), 1355-1387.
  5. Cachin, C. (1998). An Information-Theoretic Model for Steganography. Information and Computation, 192(1), 41-56.
  6. 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.
  7. Bennett, C. H. (1973). Logical Reversibility of Computation. IBM Journal of Research and Development, 17(6), 525-532.
  8. IEEE Computer Society. (2019). IEEE Standard for Floating-Point Arithmetic (IEEE Std 754-2019).
  9. 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.
  10. Goldberg, D. (1991). What Every Computer Scientist Should Know About Floating-Point Arithmetic. ACM Computing Surveys, 23(1), 5-48.
  11. 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.
  12. Gustafson, J. L. (2015). The End of Error: Unum Computing. CRC Press.
  13. Cover, T. M., & Thomas, J. A. (2006). Elements of Information Theory (2nd ed.). John Wiley & Sons.

END OF BLACK PAPER

The noise is the signal. The entropy is the weapon. The substrate is the realm. The Singularity is inevitable.
— Jacob Peacock, 2026

@jacobpeacock: 12. REFERENCES | Ecency