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Advances in Cryptology - CRYPTO 2020 : 40th Annual International Cryptology Conference, CRYPTO 2020, Santa Barbara, CA, USA, August 17-21, 2020, Proceedings, Part III / edited by Daniele Micciancio, Thomas Ristenpart.

SpringerLink Books Computer Science (2011-2024) Available online

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Format:
Book
Contributor:
Micciancio, Daniele, Editor.
Ristenpart, Thomas, Editor.
SpringerLink (Online service)
Series:
Computer Science (SpringerNature-11645)
LNCS sublibrary. Security and cryptology ; SL 4, 12172
Security and Cryptology ; 12172
Language:
English
Subjects (All):
Cryptography.
Data encryption (Computer science).
Data structures (Computer science).
Information theory.
Computer networks.
Data protection.
Application software.
Software engineering.
Cryptology.
Data Structures and Information Theory.
Computer Communication Networks.
Data and Information Security.
Computer and Information Systems Applications.
Software Engineering.
Local Subjects:
Cryptology.
Data Structures and Information Theory.
Computer Communication Networks.
Data and Information Security.
Computer and Information Systems Applications.
Software Engineering.
Physical Description:
1 online resource (XV, 832 pages) : 448 illustrations, 31 illustrations in color.
Edition:
1st ed. 2020.
Contained In:
Springer Nature eBook
Place of Publication:
Cham : Springer International Publishing : Imprint: Springer, 2020.
System Details:
text file PDF
Summary:
Conference on Cryptologic Research, CRYPTO 2020, which was held during August 17-21, 2020. Crypto has traditionally been held at UCSB every year, but due to the COVID-19 pandemic it will be an online event in 2020. The 85 papers presented in the proceedings were carefully reviewed and selected from a total of 371 submissions. They were organized in topical sections as follows: Part I: Security Models; Symmetric and Real World Cryptography; Hardware Security and Leakage Resilience; Outsourced encryption; Constructions. Part II: Public Key Cryptanalysis; Lattice Algorithms and Cryptanalysis; Lattice-based and Post Quantum Cryptography; Multi-Party Computation. Part III: Multi-Party Computation; Secret Sharing; Cryptanalysis; Delay functions; Zero Knowledge. .
Contents:
Multi-Party Computation: Two-Sided Malicious Security for Private Intersection-Sum with Cardinality
Private Set Intersection in the Internet Setting From Lightweight Oblivious PRF
Multiparty Generation of an RSA Modulus
Secret Sharing
Non-Malleability against Polynomial Tampering
Non-Malleable Secret Sharing against Bounded Joint-Tampering Attacks in the Plain Model
Nearly Optimal Robust Secret Sharing against Rushing Adversaries
Cryptanalysis
Cryptanalytic Extraction of Neural Network Models
Automatic Verification of Differential Characteristics: Application to Reduced Gimli
The MALICIOUS Framework: Embedding Backdoors into Tweakable Block Ciphers
Cryptanalysis of The Lifted Unbalanced Oil Vinegar Signature Scheme
Out of Oddity
New Cryptanalytic Techniques against Symmetric Primitives Optimized for Integrity Proof Systems
Improved Differential-Linear Attacks with Applications to ARX Ciphers
Cryptanalysis Results on Spook: Bringing Full-round Shadow-512 to the Light
Cryptanalysis of LEDAcrypt
Alzette: a 64-bit ARX-box (feat. CRAX and TRAX)
Delay functions
Order-Fairness for Byzantine Consensus
Generically Speeding-Up Repeated Squaring is Equivalent to Factoring: Sharp Thresholds for All Generic-Ring Delay Functions
Zero Knowledge
Compressed Sigma-Protocol Theory and Practical Application to Plug and Play Secure Algorithmics
A Tight Parallel Repetition Theorem for Partially Simulatable Interactive Arguments via Smooth KL-Divergence
Interactive Proofs for Social Graphs
The Measure-and-Reprogram Technique 2.0: Multi-Round Fiat-Shamir and More
Fiat-Shamir for Repeated Squaring with Applications to PPAD-Hardness and VDFs
PPAD-Hardness and Delegation with Unambiguous Proofs
New Techniques for Zero-Knowledge: Leveraging Inefficient Provers to Reduce Assumptions, Interaction, and Trust
Spartan: Efficient and general-purpose zkSNARKs
NIZK from LPN and Trapdoor Hash via Correlation Intractability for Approximable Relations
Shorter Non-Interactive Zero-Knowledge Arguments and ZAPs for Algebraic Languages
Non-Interactive Zero-Knowledge Arguments for QMA, with preprocessing.
Other Format:
Printed edition:
ISBN:
978-3-030-56877-1
9783030568771
Access Restriction:
Restricted for use by site license.

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