English

Quantum secure two party computation for set intersection with rational players

Quantum Physics 2018-06-28 v2

Abstract

Recently, Shi et al. (Phys. Rev. A, 2015) proposed Quantum Oblivious Set Member Decision Protocol (QOSMDP) where two legitimate parties, namely Alice and Bob, play a game. Alice has a secret kk and Bob has a set {k1,k2,kn}\{k_1,k_2,\cdots k_n\}. The game is designed towards testing if the secret kk is a member of the set possessed by Bob without revealing the identity of kk. The output of the game will be either "Yes" (bit 11) or "No" (bit 00) and is generated at Bob's place. Bob does not know the identity of kk and Alice does not know any element of the set. In a subsequent work (Quant. Inf. Process., 2016), the authors proposed a quantum scheme for Private Set Intersection (PSI) where the client (Alice) gets the intersected elements with the help of a server (Bob) and the server knows nothing. In the present draft, we extended the game to compute the intersection of two computationally indistinguishable sets XX and YY possessed by Alice and Bob respectively. We consider Alice and Bob as rational players, i.e., they are neither "good" nor "bad". They participate in the game towards maximizing their utilities. We prove that in this rational setting, the strategy profile ((cooperate,abort),(cooperate,abort)((cooperate, abort), (cooperate, abort)) is a strict Nash equilibrium. If ((cooperate,abort),(cooperate,abort)((cooperate, abort), (cooperate, abort)) is strict Nash, then fairness as well as correctness of the protocol are guaranteed.

Keywords

Cite

@article{arxiv.1801.08319,
  title  = {Quantum secure two party computation for set intersection with rational players},
  author = {Arpita Maitra},
  journal= {arXiv preprint arXiv:1801.08319},
  year   = {2018}
}

Comments

14 pages, almost same as published version

R2 v1 2026-06-22T23:55:39.314Z