Published October 2018 | Version Submitted
Book Section - Chapter Open

Classical Homomorphic Encryption for Quantum Circuits

Abstract

We present the first leveled fully homomorphic encryption scheme for quantum circuits with classical keys. The scheme allows a classical client to blindly delegate a quantum computation to a quantum server: an honest server is able to run the computation while a malicious server is unable to learn any information about the computation. We show that it is possible to construct such a scheme directly from a quantum secure classical homomorphic encryption scheme with certain properties. Finally, we show that a classical homomorphic encryption scheme with the required properties can be constructed from the learning with errors problem.

Additional Information

© 2018 IEEE. Thanks to Dorit Aharonov, Zvika Brakerski, Sanjam Garg, Stacey Jeffery, Zeph Landau, Umesh Vazirani and Thomas Vidick for many useful discussions. The author is supported by Templeton Foundation Grant 52536, ARO Grant W911NF-12-1-0541, NSF Grant CCF-1410022 and MURI Grant FA9550-18-1-0161.

Attached Files

Submitted - 1708.02130.pdf

Files

1708.02130.pdf

Files (351.8 kB)

Name Size
md5:be6a99f51650a8a6fa9c2094ddb21425
351.8 kB Preview Download

Additional details

Identifiers

Eprint ID
104762
Resolver ID
CaltechAUTHORS:20200805-133628530

Related works

Funding

John Templeton Foundation
52536
Army Research Office (ARO)
W911NF-12-1-0541
NSF
CCF-1410022
Air Force Office of Scientific Research (AFOSR)
FA9550-18-1-0161

Dates

Created
2020-08-05
Created from EPrint's datestamp field
Updated
2021-11-16
Created from EPrint's last_modified field