Observation of end-to-end pumping in a quasiperiodic Fibonacci-type photonic chain

Fuente: arXiv
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Autori principali: Ghosh, Arnob Kumar, Chen, Ang, Hassan, Ashraf El, Holmvall, Patric, Bourennane, Mohamed, Black-Schaffer, Annica M.
Natura: Preprint
Pubblicazione: 2026
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author Ghosh, Arnob Kumar
Chen, Ang
Hassan, Ashraf El
Holmvall, Patric
Bourennane, Mohamed
Black-Schaffer, Annica M.
author_facet Ghosh, Arnob Kumar
Chen, Ang
Hassan, Ashraf El
Holmvall, Patric
Bourennane, Mohamed
Black-Schaffer, Annica M.
contents Topological pumps offer a promising route to operate as connecting buses, supplying efficient and robust connectivity between non-neighboring elements in a network. Here, we investigate a finite quasiperiodic Fibonacci-type photonic chain and demonstrate its ability for end-to-end pumping, with only small and simple changes to the system. First, we use a tight-binding formalism to numerically show that a localized pumping state can be transferred between opposite ends of the system, with only a small structural change to the chain. Then, we experimentally implement this topological pump in an array of coupled optical waveguides, where light propagation is effectively described by the tight-binding model under the paraxial approximation, enabling direct correspondence between theory and experiment. We numerically simulate and experimentally demonstrate pumping by injecting light into a single waveguide at one end of the setup, which activates a localized pumping state. As the light propagates along the wave guide array, it is also pumped to the other end. We further show that pumping remains robust against structural deformation, such as controlled defects in the waveguide array. Our results establish that quasiperiodic Fibonacci-type photonic lattices are a robust and experimentally viable platform for disorder-resilient state transfer.
format Preprint
id arxiv_https___arxiv_org_abs_2605_13116
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Observation of end-to-end pumping in a quasiperiodic Fibonacci-type photonic chain
Ghosh, Arnob Kumar
Chen, Ang
Hassan, Ashraf El
Holmvall, Patric
Bourennane, Mohamed
Black-Schaffer, Annica M.
Mesoscale and Nanoscale Physics
Optics
Quantum Physics
Topological pumps offer a promising route to operate as connecting buses, supplying efficient and robust connectivity between non-neighboring elements in a network. Here, we investigate a finite quasiperiodic Fibonacci-type photonic chain and demonstrate its ability for end-to-end pumping, with only small and simple changes to the system. First, we use a tight-binding formalism to numerically show that a localized pumping state can be transferred between opposite ends of the system, with only a small structural change to the chain. Then, we experimentally implement this topological pump in an array of coupled optical waveguides, where light propagation is effectively described by the tight-binding model under the paraxial approximation, enabling direct correspondence between theory and experiment. We numerically simulate and experimentally demonstrate pumping by injecting light into a single waveguide at one end of the setup, which activates a localized pumping state. As the light propagates along the wave guide array, it is also pumped to the other end. We further show that pumping remains robust against structural deformation, such as controlled defects in the waveguide array. Our results establish that quasiperiodic Fibonacci-type photonic lattices are a robust and experimentally viable platform for disorder-resilient state transfer.
title Observation of end-to-end pumping in a quasiperiodic Fibonacci-type photonic chain
topic Mesoscale and Nanoscale Physics
Optics
Quantum Physics
url https://arxiv.org/abs/2605.13116