English

A Distributed Computing Perspective of Unconditionally Secure Information Transmission in Russian Cards Problems

Cryptography and Security 2020-09-30 v1 Distributed, Parallel, and Cluster Computing Discrete Mathematics

Abstract

The problem of AA privately transmitting information to BB by a public announcement overheard by an eavesdropper CC is considered. To do so by a deterministic protocol, their inputs must be correlated. Dependent inputs are represented using a deck of cards. There is a publicly known signature (a,b,c)(a,b,c), where n=a+b+c+rn = a + b + c + r, and AA gets aa cards, BB gets bb cards, and CC gets cc cards, out of the deck of nn cards. Using a deterministic protocol, AA decides its announcement based on her hand. Using techniques from coding theory, Johnson graphs, and additive number theory, a novel perspective inspired by distributed computing theory is provided, to analyze the amount of information that AA needs to send, while preventing CC from learning a single card of her hand. In one extreme, the generalized Russian cards problem, BB wants to learn all of AA's cards, and in the other, BB wishes to learn something about AA's hand.

Keywords

Cite

@article{arxiv.2009.13644,
  title  = {A Distributed Computing Perspective of Unconditionally Secure Information Transmission in Russian Cards Problems},
  author = {Sergio Rajsbaum},
  journal= {arXiv preprint arXiv:2009.13644},
  year   = {2020}
}
R2 v1 2026-06-23T18:51:42.606Z