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Public-Key Cryptography – PKC 2016 [electronic resource] : 19th IACR International Conference on Practice and Theory in Public-Key Cryptography, Taipei, Taiwan, March 6-9, 2016, Proceedings, Part I /

Contributor(s): Material type: TextTextSeries: Security and Cryptology ; 9614Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2016Edition: 1st ed. 2016Description: XIV, 472 p. 46 illus. in color. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783662493847
Subject(s): Additional physical formats: Printed edition:: No title; Printed edition:: No titleDDC classification:
  • 005.824 23
LOC classification:
  • QA268
Online resources:
Contents:
Trading Plaintext-Awareness for Simulatability to Achieve Chosen Cipher Text Security -- Chosen-Cipher Text Security from Subset Sum.-mso-fareast-theme-font: minor-latin;mso-hansi-theme-font:minor-latin;mso-bidi-font-family:CMR10; mso-ansi-language:EN-US;mso-fareast-language:EN-US;mso-bidi-language:AR-SA">On the Hardness of Proving CCA-Security of Signed ElGamal -- CA-Secure Keyed-Fully Homomorphic Encryption -- On the Key Dependent Message Security of the Fujisaki-Okamoto Constructions -- Extended Nested Dual System Groups, Revisited -- Functional Encryption for Inner Product with Full Function Privacy -- Deniable Functional Encryption -- Identity-Based Cryptosystems and Quadratic Residuosity -- Identity-based Hierarchical Key-insulated Encryption without Random Oracles -- Attribute-Based Signatures for Circuits from Bilinear Map -- Efficient Unlinkable Sanitizable Signatures from Signatures with Re-Randomizable Keys -- Fault-Tolerant Aggregate Signatures -- Delegatable Functional Signatures -- Mitigating Multi-Target Attacks in Hash-based Signatures -- Nearly Optimal Verifiable Data Streaming -- ARMed SPHINCS Computing a 41 KB signature in 16 KB of RAM.
In: Springer Nature eBookSummary: The two-volume set LNCS 9614 and 9615 constitutes the refereed proceedings of the 19th IACR International Conference on the Practice and Theory in Public-Key Cryptography, PKC 2016, held in Taipei, Taiwan, in March 2016. The 34 revised papers presented were carefully reviewed and selected from 143 submissions. They are organized in topical sections named: CCA security, functional encryption, identity-based encryption, signatures, cryptanalysis, leakage-resilient and circularly secure encryption, protocols, and primitives.
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Trading Plaintext-Awareness for Simulatability to Achieve Chosen Cipher Text Security -- Chosen-Cipher Text Security from Subset Sum.-mso-fareast-theme-font: minor-latin;mso-hansi-theme-font:minor-latin;mso-bidi-font-family:CMR10; mso-ansi-language:EN-US;mso-fareast-language:EN-US;mso-bidi-language:AR-SA">On the Hardness of Proving CCA-Security of Signed ElGamal -- CA-Secure Keyed-Fully Homomorphic Encryption -- On the Key Dependent Message Security of the Fujisaki-Okamoto Constructions -- Extended Nested Dual System Groups, Revisited -- Functional Encryption for Inner Product with Full Function Privacy -- Deniable Functional Encryption -- Identity-Based Cryptosystems and Quadratic Residuosity -- Identity-based Hierarchical Key-insulated Encryption without Random Oracles -- Attribute-Based Signatures for Circuits from Bilinear Map -- Efficient Unlinkable Sanitizable Signatures from Signatures with Re-Randomizable Keys -- Fault-Tolerant Aggregate Signatures -- Delegatable Functional Signatures -- Mitigating Multi-Target Attacks in Hash-based Signatures -- Nearly Optimal Verifiable Data Streaming -- ARMed SPHINCS Computing a 41 KB signature in 16 KB of RAM.

The two-volume set LNCS 9614 and 9615 constitutes the refereed proceedings of the 19th IACR International Conference on the Practice and Theory in Public-Key Cryptography, PKC 2016, held in Taipei, Taiwan, in March 2016. The 34 revised papers presented were carefully reviewed and selected from 143 submissions. They are organized in topical sections named: CCA security, functional encryption, identity-based encryption, signatures, cryptanalysis, leakage-resilient and circularly secure encryption, protocols, and primitives.

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