Abstract
Classical client remote state preparation (CC − RSP) is a primitive where a fully classical party (client) can instruct the preparation of a sequence of random quantum states on some distant party (server) in a way that the description is known to the client but remains hidden from the server. This primitive has many applications, most prominently, it makes blind quantum computing possible for classical clients. In this work, we give a protocol for classical client remote state preparation, that requires minimal resources. The protocol is proven secure against honest-but-curious servers and any malicious third party in a game-based security framework. We provide an instantiation of a trapdoor (approximately) 2-regular family of functions whose security is based on the hardness of the Learning-With-Errors problem, including a first analysis of the set of usable parameters. We also run an experimentation on IBM’s quantum cloud using a toy function. This is the first proof-of-principle experiment of classical client remote state preparation.
Funder
Engineering and Physical Sciences Research Council
Air Force Research Laboratory
Subject
Applied Mathematics,Computational Theory and Mathematics,Computer Networks and Communications,Computer Science Applications,Software
Reference50 articles.
1. Quantum cryptography beyond quantum key distribution
2. Private quantum computation: an introduction to blind quantum computing and related protocols
3. Quantum homomorphic encryption for circuits of low T-gate complexity;Broadbent,2015
4. Quantum homomorphic encryption for polynomial-sized circuits;Dulek,2016
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