Quantum Cryptography
General security notions, constructions, and separations involving quantum adversaries or quantum information.
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CPA PKE, Quantumly Broken The first item in the source’s Open Problems section. It builds counterexamples for PRFs, CPA-secure symmetric-key encryption, MACs, signatures and CCA-2-secure public-key encryption, all classically secure under LWE via black-box reductions and all quantumly broken with two or three classical queries. CPA-secure public-key encryption is the case its technique cannot reach, and it says why. 4 open |
Black Box SeparationsLearning With ErrorsQuantum Cryptographyseparation | |
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One Haar State Looks Like Many Stated in the source’s Open Problems section as a conjecture it believes true, with the note that it could neither prove it nor find it proved or even formalised anywhere. The source proves a strictly weaker pointwise domination bound, its Lemma 2, sufficient for its own applications and silent about total variation distance. 5 open |
Pseudorandom Quantum StatesQuantum CryptographyQuantum Informationothertight-boundadaptation (ai) | |
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Erasing real-or-random vs Boneh–Zhandry Open: whether erasing real-or-random security implies Boneh-Zhandry security. The reverse non-implication is proved only in the quantum random oracle model, and this direction is one of six non-implications the source paper conjectures and does not prove. 5 open |
Quantum CryptographyQuantum Encryption Notionsseparation | |
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One erasing challenge vs many embedding learns Open: whether a single erasing two-ciphertext challenge query, with classical learning queries, implies security against polynomially many embedding-model superposition learning queries. One of six non-implications the source paper conjectures, and on its own account the one that would close the most remaining cells. 5 open |
Quantum CryptographyQuantum Encryption Notionsseparation | |
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Standard real-or-random vs embedding two-ciphertext Open: whether one standard-oracle real-or-random challenge query implies one embedding-model two-ciphertext challenge query, with classical learning queries on both sides. Both notions are singleton classes in the source’s classification, and this is one of six non-implications it conjectures. 5 open |
Quantum CryptographyQuantum Encryption Notionsseparation | |
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OWF minimality, non-black-box reductions Open when the classical security implication is not witnessed by a black-box reduction between the two games. Settled affirmatively whenever it is, for uniform and non-uniform quantum adversaries alike, with the implementation reduction left arbitrary. 5 open |
Black Box SeparationsOne Way FunctionsQuantum Cryptographyequivalence |
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