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January 1, 1990· Proceedings of the twenty-second annual ACM symposium on Theory of computing - STOC '90
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Public-key cryptosystems provably secure against chosen ciphertext attacks

Abstract

We show how to construct a public-key cryptosystem (as originally defined by DiNe and Hellman) secure against chosen ciphertezt attacks, given a public-key cryptosystern secure against passive eavesdropping and a noninteractive zero-knowledge proof system in the shared string model. No such secure cryptosystems were known before. A concrete implementation can be based on quadratic residuosity intractability.

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