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Experimental characterization of cluster states using fibre sources
B. A. Bell
, M. S. Tame
, A. S. Clark
, A. R. McMillan
,
R. W. Nock
, W. J. Wadsworth
, J. G. Rarity
University of Bristol
Royal Brompton Hospital
University of Sydney
University of Bath
Research output
:
Chapter in Book/Published conference output
›
Conference publication
Overview
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Keyphrases
Fiber Source
100%
Experimental Characterization
100%
Cluster State
100%
Photonic Crystal Fiber
75%
Idler
75%
Spectral Correlation
50%
Quantum Information
50%
GHZ State
50%
Interferometric
25%
Pulsed Laser
25%
Logic Gates
25%
Large-scale Cluster
25%
Nonlinearity
25%
Measurement Basis
25%
Interaction Length
25%
Single-mode Fiber
25%
Sagnac Loop
25%
Pumping Power
25%
Two-source
25%
Silica
25%
Guided Modes
25%
Microstructure
25%
Information Application
25%
Silica Core
25%
High Brightness
25%
Mode Shape
25%
Lossy
25%
Fusion Process
25%
Coupling Efficiency
25%
Degrees of Freedom
25%
Quantum Computing
25%
Polarization Beam Splitter
25%
Quantum Interference
25%
Spontaneous Four-wave Mixing
25%
Photon Pairs
25%
Star Clusters
25%
Correlated Photons
25%
Loop Interference
25%
Pure Quantum State
25%
Polarization-entangled Photons
25%
Four Qubit
25%
Entangled State
25%
Improved Source
25%
Universal Quantum Computation
25%
Heralded Photons
25%
Mode Area
25%
Entanglement Generation
25%
Graph State
25%
Physics
Photonic Crystal Fiber
100%
Spectral Correlation
66%
Quantum Computing
66%
Quantum Information
66%
Pulsed Laser
33%
Four-Wave Mixing
33%
Quantum Dot
33%
Degree of Freedom
33%
Beamsplitter
33%
Star Cluster
33%