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RESEARCH PRODUCT

High-dimensional one-way quantum processing enabled by optical d-level cluster states

Mehedi IslamWilliam J. MunroYu ZhangAlfonso Carmelo CinoJosé AzañaBennet FischerLuis Romero CortesRaman KashyapMichael KuesRoberto MorandottiStefania SciaraLucia CaspaniBrent E. LittlePiotr RoztockiChristian ReimerSébastien LorangerDavid J. MossSai T. Chu

subject

PhysicsFour-wave mixingPhotonCluster (physics)State (functional analysis)TopologyQuantum information scienceInterference (wave propagation)Quantum computerDomain (software engineering)

description

By introducing and modifying two-photon hyper-entangled states in the time-frequency domain using an on-chip micro-cavity, we succeed in generating high-dimensional cluster states, demonstrate d-level measurement-based quantum processing and show the state’s higher noise tolerance.

https://doi.org/10.1364/qim.2019.s2c.3