328 citations · 536 across the 5 of their papers we have counts for
9 papers
High-speed thin-film lithium niobate quantum processor driven by a solid-state quantum emitter
Patrik I. Sund, Emma Lomonte, Stefano Paesani +9
Scalable photonic quantum computing architectures pose stringent requirements on photonic processing devices. The need for low-loss high-speed reconfigurable circuits and near-dete…
On-chip quantum information processing with distinguishable photons
Patrick Yard, Alex E. Jones, Stefano Paesani +3
Multi-photon interference is at the heart of photonic quantum technologies. Arrays of integrated cavities can support bright sources of single-photons with high purity and small fo…
Protocol for generation of high-dimensional entanglement from an array of non-interacting photon emitters
Thomas J. Bell, Jacob F. F. Bulmer, Alex E. Jones +3
Encoding high-dimensional quantum information into single photons can provide a variety of benefits for quantum technologies, such as improved noise resilience. However, the effici…
A scheme for universal high-dimensional quantum computation with linear optics
Stefano Paesani, Jacob F. F. Bulmer, Alex E. Jones +2
Photons are natural carriers of high-dimensional quantum information, and, in principle, can benefit from higher quantum information capacity and noise-resilience. However, schemes…
Near-ideal spontaneous photon sources in silicon quantum photonics
Stefano Paesani, Massimo Borghi, Stefano Signorini +3
While integrated photonics is a robust platform for quantum information processing, architectures for photonic quantum computing place stringent demands on high quality information…
Chip-to-chip quantum teleportation and multi-photon entanglement in silicon
Daniel Llewellyn, Yunhong Ding, Imad I. Faruque +17
Exploiting semiconductor fabrication techniques, natural carriers of quantum information such as atoms, electrons, and photons can be embedded in scalable integrated devices. Integ…