Breaking the O(√ n)-Bit Barrier
Author:
Affiliation:
1. IDC, Herzliya, Israel
2. Northeastern University, Boston, MA, USA
3. Johns Hopkins University, Baltimore, MD, USA
Funder
NSF CAREER award
ISF Grant
ERC project
NSF grant
NSF CNS grant
Johns Hopkins University Catalyst award
AFOSR Award
Publisher
ACM
Link
https://dl.acm.org/doi/pdf/10.1145/3465084.3467897
Reference58 articles.
1. Communication Complexity of Byzantine Agreement, Revisited
2. Ittai Abraham Srinivas Devadas Danny Dolev Kartik Nayak and Ling Ren. 2019 b. Synchronous Byzantine Agreement with Expected O(1) Rounds Expected O(n(2)) Communication and Optimal Resilience. In Financial Cryptography and Data Security. 320--334. Ittai Abraham Srinivas Devadas Danny Dolev Kartik Nayak and Ling Ren. 2019 b. Synchronous Byzantine Agreement with Expected O(1) Rounds Expected O(n(2)) Communication and Optimal Resilience. In Financial Cryptography and Data Security. 320--334.
3. Multiparty Computation with Low Communication, Computation and Interaction via Threshold FHE
4. Multi-signatures in the plain public-Key model and a general forking lemma
5. Completeness theorems for non-cryptographic fault-tolerant distributed computation
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