Published August 28, 2024 | Version v1
Journal article

Secure multiparty quantum computation protocol for quantum circuits: The exploitation of triply even quantum error-correcting codes

  • 1. NTT Social Informatics Laboratories, Tokyo 180-8585, Japan

Description

Secure multiparty quantum computation (MPQC) protocol is a cryptographic primitive allowing error-free distributed quantum computation to a group of n mutually distrustful quantum nodes even when some quantum nodes disobey the instructions of the protocol. Here we suggest a modified MPQC protocol that adopts unconventional quantum error-correcting codes and as a consequence reduces the number of qubits required for the protocol execution. In particular, the replacement of the self-dual Calderbank-Shor-Steane quantum error-correcting codes with triply even ones permits us to avoid the previously indispensable but resource-intensive procedure of the "magic-state" verification. Besides, since every extra qubit reduces the credibility of physical devices, our suggestion makes the MPQC protocol more accessible for the near-future technology by reducing the number of necessary qubits per quantum node from n2+Θ(r)n, where r is the security parameter, to n2+3n.

Additional details

Publishing Information

Journal Title
Physical Review A
Journal Volume
110
Journal Issue
2
Journal Page Range
19 pgs.
ISSN
1094-1622

Optional Information

Copyright
©2024 American Physical Society
Notes
Contact Email: Contact author: petr.mishchenko.us@hco.ntt.co.jp; Contact Email: Contact author: keita.xagawa@tii.ae; Record automatically processed