Universal quantum computation with temporal-mode bilayer square lattices
journal contribution
posted on 2024-11-23, 10:45 authored by Rafael Alexander, Shota Yokoyama, Akira Furusawa, Nicolas MenicucciNicolas MenicucciWe propose an experimental design for universal continuous-variable quantum computation that incorporates recent innovations in linear-optics-based continuous-variable cluster state generation and cubic-phase gate teleportation. The first ingredient is a protocol for generating the bilayer-square-lattice cluster state (a universal resource state) with temporal modes of light. With this state, measurement-based implementation of Gaussian unitary gates requires only homodyne detection. Second, we describe a measurement device that implements an adaptive cubic-phase gate, up to a random phase-space displacement. It requires a two-step sequence of homodyne measurements and consumes a (non-Gaussian) cubic-phase state. © 2018 American Physical Society.
Funding
ARC Centre of Excellence for Quantum Computation and Communication Technology
Australian Research Council
Find out more...History
Related Materials
- 1.
- 2.
Journal
Physical Review AVolume
97Number
32302Issue
3Start page
1End page
12Total pages
12Publisher
American Physical SocietyPlace published
United StatesLanguage
EnglishCopyright
© 2018 American Physical SocietyFormer Identifier
2006084729Esploro creation date
2020-06-22Fedora creation date
2019-03-26Open access
- Yes
Usage metrics
Keywords
Licence
Exports
RefWorksRefWorks
BibTeXBibTeX
Ref. managerRef. manager
EndnoteEndnote
DataCiteDataCite
NLMNLM
DCDC

