8× 8 reconfigurable quantum photonic processor based on silicon nitride waveguides

C Taballione, TAW Wolterink, J Lugani, A Eckstein… - Optics express, 2019 - opg.optica.org
C Taballione, TAW Wolterink, J Lugani, A Eckstein, BA Bell, R Grootjans, I Visscher…
Optics express, 2019opg.optica.org
The development of large-scale optical quantum information processing circuits ground on
the stability and reconfigurability enabled by integrated photonics. We demonstrate a
reconfigurable 8× 8 integrated linear optical network based on silicon nitride waveguides for
quantum information processing. Our processor implements a novel optical architecture
enabling any arbitrary linear transformation and constitutes the largest programmable circuit
reported so far on this platform. We validate a variety of photonic quantum information …
The development of large-scale optical quantum information processing circuits ground on the stability and reconfigurability enabled by integrated photonics. We demonstrate a reconfigurable 8×8 integrated linear optical network based on silicon nitride waveguides for quantum information processing. Our processor implements a novel optical architecture enabling any arbitrary linear transformation and constitutes the largest programmable circuit reported so far on this platform. We validate a variety of photonic quantum information processing primitives, in the form of Hong-Ou-Mandel interference, bosonic coalescence/anti-coalescence and high-dimensional single-photon quantum gates. We achieve fidelities that clearly demonstrate the promising future for large-scale photonic quantum information processing using low-loss silicon nitride.
opg.optica.org
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