Generic Construction of Chosen Ciphertext Secure Proxy Re-Encryption
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Publication:2890017
DOI10.1007/978-3-642-27954-6_22zbMath1292.94072OpenAlexW75310505MaRDI QIDQ2890017
Takahiro Matsuda, Goichiro Hanaoka, Rui Zhang, Noboru Kunihiro, Yunlei Zhao, Jian Weng, Yutaka Kawai
Publication date: 8 June 2012
Published in: Lecture Notes in Computer Science (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/978-3-642-27954-6_22
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Identity-based re-encryption scheme with lightweight re-encryption key generation ⋮ Hierarchical Conditional Proxy Re-Encryption: A New Insight of Fine-Grained Secure Data Sharing ⋮ On the security of two identity-based conditional proxy re-encryption schemes ⋮ Certificateless Proxy Re-Encryption Without Pairings ⋮ Generic conversions from CPA to CCA without ciphertext expansion for threshold ABE with constant-size ciphertexts ⋮ Chosen-ciphertext secure multi-hop identity-based conditional proxy re-encryption with constant-size ciphertexts ⋮ PRE: stronger security notions and efficient construction with non-interactive opening ⋮ Re-Encryption Verifiability: How to Detect Malicious Activities of a Proxy in Proxy Re-Encryption ⋮ Constant-size CCA-secure multi-hop unidirectional proxy re-encryption from indistinguishability obfuscation ⋮ Lattice-based identity-based resplittable threshold public key encryption scheme ⋮ Proxy Re-encryption with Delegatable Verifiability ⋮ Universal proxy re-encryption
Cites Work
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- On the Security of a Bidirectional Proxy Re-encryption Scheme from PKC 2010
- Improved proxy re-encryption schemes with applications to secure distributed storage
- Efficient Unidirectional Proxy Re-Encryption
- CCA Proxy Re-Encryption without Bilinear Maps in the Standard Model
- CCA-Secure Proxy Re-encryption without Pairings
- Securing threshold cryptosystems against chosen ciphertext attack
- An Efficient threshold Public Key Cryptosystem Secure Against Adaptive Chosen Ciphertext Attack (Extended Abstract)
- Unidirectional Chosen-Ciphertext Secure Proxy Re-encryption
- Topics in Cryptology – CT-RSA 2006
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