Communication complexity of entanglement assisted multi-party computation
Abstract
We consider a quantum and classical version multi-party function computation problem with players, where players need to communicate appropriate information to player 1, so that a "generalized" inner product function with an appropriate promise can be calculated. The communication complexity of a protocol is the total number of bits that need to be communicated. When is prime and for our chosen function, we exhibit a quantum protocol (with complexity bits) and a classical protocol (with complexity ) bits). In the quantum protocol, the players have access to entangled qudits but the communication is still classical. Furthermore, we present an integer linear programming formulation for determining a lower bound on the classical communication complexity. This demonstrates that our quantum protocol is strictly better than classical protocols.
Cite
@article{arxiv.2305.04435,
title = {Communication complexity of entanglement assisted multi-party computation},
author = {Ruoyu Meng and Aditya Ramamoorthy},
journal= {arXiv preprint arXiv:2305.04435},
year = {2024}
}
Comments
Modified layout so that the reference is shown correctly