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Dr. Cariñe-Catrileo, Jaime
Nombre de publicación
Dr. Cariñe-Catrileo, Jaime
Nombre completo
Cariñe Catrileo, Jaime Andrés
Facultad
Email
jcarine@ucsc.cl
ORCID
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- PublicationComputational advantage from the quantum superposition of multiple temporal orders of photonic gates(American Physical Society, 2021)
;Taddei, Márcio M.; ;Martínez, Daniel ;García, Tania ;Guerrero, Nayda ;Abbott, Alastair A. ;Araújo, Mateus ;Branciard, Cyril ;Gómez, Esteban S. ;Walborn, Stephen P. ;Aolita, LeandroLima, GustavoModels for quantum computation with circuit connections subject to the quantum superposition principle have recently been proposed. In them, a control quantum system can coherently determine the order in which a target quantum system undergoes N gate operations. This process, known as the quantum N-switch, is a resource for several information-processing tasks. In particular, it provides a computational advantage—over fixed-gate-order quantum circuits—for phase-estimation problems involving N unknown unitary gates. However, the corresponding algorithm requires an experimentally unfeasible target-system dimension (super)exponential in N. Here, we introduce a promise problem for which the quantum N-switch gives an equivalent computational speedup with target-system dimension as small as 2 regardless of N. We use state-of-the-art multicore optical-fiber technology to experimentally demonstrate the quantum N-switch with N = 4 gates acting on a photonic-polarization qubit. This is the first observation of a quantum superposition of more than N = 2 temporal orders, demonstrating its usefulness for efficient phase estimation.