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Artificial Intelligence and Quantum Computing: The Fundamentals | S P . . . Quantum computing's combination with artificial intelligence promises a paradigm shift in computational speed and capability but will also bring new threats in terms of cyber security, privacy, and the potential for damaging bias Recent developments in both areas have been remarkable
On One-Shot Signatures, Quantum vs Classical Binding, and Obfuscating . . . We give the first standard-model OSS, with provable security assuming (sub-exponential) in-distinguishability obfuscation (iO) and LWE This also gives the first standard-model separation between classical and collapse-binding post-quantum commitments hashing, solving a decade-old open problem
Watermarking PRFs and PKE Against Quantum Adversaries We construct a publicly extractable watermarking PRF against quantum adversaries from indistinguishability obfuscation and the quantum hardness of the LWE problem The marking and extraction algorithms use a public parameter and a public extraction key, respectively
Quantum Indistinguishable Obfuscation via Quantum Circuit Equivalence In this paper, we propose a scheme for constructing QiO via the equivalence of quantum circuits It introduces the concept of quantum subpath sum equiv-alence, demonstrating that indistinguisha-bility between two quantum circuits can be achieved by incremental changes in quan-tum subpaths
Quantum Indistinguishable Obfuscation via Quantum Circuit Equivalence In this paper, we propose a scheme for constructing QiO via the equivalence of quantum circuits It introduces the concept of quantum subpath sum equivalence, demonstrating that indistinguishability between two quantum circuits can be achieved by incremental changes in quantum subpaths