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Product details:
- ISBN 10: 3030643786
- ISBN 13: 9783030643782
- Author: Rafael Pass
This three-volume set, LNCS 12550, 12551, and 12552, constitutes the refereed proceedings of the 18th International Conference on Theory of Cryptography, TCCC 2020, held in Durham, NC, USA, in November 2020. The total of 71 full papers presented in this three-volume set was carefully reviewed and selected from 167 submissions. Amongst others they cover the following topics: study of known paradigms, approaches, and techniques, directed towards their better understanding and utilization; discovery of new paradigms, approaches and techniques that overcome limitations of the existing ones, formulation and treatment of new cryptographic problems; study of notions of security and relations among them; modeling and analysis of cryptographic algorithms; and study of the complexity assumptions used in cryptography. Due to the Corona pandemic this event was held virtually.
Table of contents:
Recursive Proof Composition from Accumulation Schemes
Linear-Time Arguments with Sublinear Verification from Tensor Codes
Barriers for Succinct Arguments in the Random Oracle Model
Accumulators in (and Beyond) Generic Groups: Non-trivial Batch Verification Requires Interaction
Batch Verification and Proofs of Proximity with Polylog Overhead
Batch Verification for Statistical Zero Knowledge Proofs
Public-Coin Zero-Knowledge Arguments with (almost) Minimal Time and Space Overheads
On the Price of Concurrency in Group Ratcheting Protocols
Stronger Security and Constructions of Multi-designated Verifier Signatures
Continuous Group Key Agreement with Active Security
Round Optimal Secure Multiparty Computation from Minimal Assumptions
Reusable Two-Round MPC from DDH
Mr NISC: Multiparty Reusable Non-Interactive Secure Computation
Secure Massively Parallel Computation for Dishonest Majority
Towards Multiparty Computation Withstanding Coercion of All Parties
Synchronous Constructive Cryptography
Topology-Hiding Communication from Minimal Assumptions
Information-Theoretic 2-Round MPC Without Round Collapsing: Adaptive Security, and More
On Statistical Security in Two-Party Computation
The Resiliency of MPC with Low Interaction: The Benefit of Making Errors (Extended Abstract)
Revisiting Fairness in MPC: Polynomial Number of Parties and General Adversarial Structures
On the Power of an Honest Majority in Three-Party Computation Without Broadcast
A Secret-Sharing Based MPC Protocol for Boolean Circuits with Good Amortized Complexity
On the Round Complexity of the Shuffle Model
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