
handle: 11585/797388
Type-two constructions abound in cryptography: adversaries for encryption and authentication schemes, if active, are modeled as algorithms having access to oracles, i.e. as second-order algorithms. But how about making cryptographic schemes themselves higher-order? This paper gives an answer to this question, by first describing why higher-order cryptography is interesting as an object of study, then showing how the concept of probabilistic polynomial time algorithm can be generalized so as to encompass algorithms of order strictly higher than two, and finally proving some positive and negative results about the existence of higher-order cryptographic primitives, namely authentication schemes and pseudorandom functions.
cryptography, [INFO.INFO-LO] Computer Science [cs]/Logic in Computer Science [cs.LO], Higher-order computation, probabilistic computation, Cryptography; Game semantics; Higher-order computation; Probabilistic computation, game semantics, 004, [INFO.INFO-CR] Computer Science [cs]/Cryptography and Security [cs.CR], ddc: ddc:004
cryptography, [INFO.INFO-LO] Computer Science [cs]/Logic in Computer Science [cs.LO], Higher-order computation, probabilistic computation, Cryptography; Game semantics; Higher-order computation; Probabilistic computation, game semantics, 004, [INFO.INFO-CR] Computer Science [cs]/Cryptography and Security [cs.CR], ddc: ddc:004
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