341 citations · 381 across the 2 of their papers we have counts for
7 papers
Mapping graph state orbits under local complementation
Jeremy C. Adcock, Sam Morley-Short, Axel Dahlberg +1
Graph states, and the entanglement they posses, are central to modern quantum computing and communications architectures. Local complementation---the graph operation that links all…
Mid-infrared quantum optics in silicon
Lawrence M. Rosenfeld, Dominic A. Sulway, Gary F. Sinclair +4
Applied quantum optics stands to revolutionise many aspects of information technology, provided performance can be maintained when scaled up. Silicon quantum photonics satisfies th…
Programmable four-photon graph states on a silicon chip
Jeremy C. Adcock, Caterina Vigliar, Raffaele Santagati +2
Future quantum computers require a scalable architecture on a scalable technology---one that supports millions of high-performance components. Measurement-based protocols, based on…
Hard limits on the postselectability of optical graph states
Jeremy C. Adcock, Sam Morley-Short, Joshua W. Silverstone +1
Coherent control of large entangled graph states enables a wide variety of quantum information processing tasks, including error-corrected quantum computation. The linear optical a…
Multidimensional quantum entanglement with large-scale integrated optics
Jianwei Wang, Stefano Paesani, Yunhong Ding +16
The ability to control multidimensional quantum systems is key for the investigation of fundamental science and for the development of advanced quantum technologies. Here we demons…
Silicon photonic processor of two-qubit entangling quantum logic
R. Santagati, J. W. Silverstone, M. J. Strain +11
Entanglement is a fundamental property of quantum mechanics, and is a primary resource in quantum information systems. Its manipulation remains a central challenge in the developme…