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quant-ph2025

Scalable quantum interference in integrated lithium niobate nanophotonics

Tristan Kuttner, Alessandra Sabatti, Jost Kellner +2

Photonics has emerged as one of the leading platforms for the implementation of real-world-applicable quantum technologies, enabling secure communication, enhanced sensing capabili…

quant-ph2025

Counter-propagating spontaneous parametric down-conversion source in lithium niobate on insulator

Jost Kellner, Alessandra Sabatti, Tristan Kuttner +2

Quantum photonic technologies rely on the ability to generate, manipulate, and interfere indistinguishable single photons on a scalable platform. Among the various approaches, spon…

quant-ph2025

Programmable Bell State Generation in an Integrated Thin Film Lithium Niobate Circuit

Andreas Maeder, Robert J. Chapman, Alessandra Sabatti +3

Entanglement is central to quantum technologies such as cryptography, sensing, and computing. Photon pairs generated via nonlinear optical processes are excellent for preparing ent…

quant-ph2024

Time-bin entangled Bell state generation and tomography on thin-film lithium niobate

Giovanni Finco, Filippo Miserocchi, Andreas Maeder +4

Optical quantum communication technologies are making the prospect of unconditionally secure and efficient information transfer a reality. The possibility of generating and reliabl…

quant-ph2024

On-chip quantum interference between independent lithium niobate-on-insulator photon-pair sources

Robert J. Chapman, Tristan Kuttner, Jost Kellner +5

Generating and interfering non-classical states of light is fundamental to optical quantum information science and technology. Quantum photonic integrated circuits provide one path…