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Self-Pulsing in driven-dissipative photonic Bose-Hubbard dimers

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arxiv 2104.00649 v1 pith:2HUGG2RG submitted 2021-04-01 physics.optics nlin.PS

classification physics.opticsnlin.PS
keywords bose-hubbardcavitycoupleddetuningdimerdrivendriven-dissipativephotonic
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We experimentally investigate the nonlinear dynamics of two coupled fiber ring resonators, coherently driven by a single laser beam. We comprehensively explore the optical switching arising when scanning the detuning of the undriven cavity, and show how the driven cavity detuning dramatically changes the resulting hysteresis cycle. By driving the photonic dimer out-of-equilibrium, we observe the occurrence of stable self-switching oscillations near avoided resonance crossings. All results agree well with the driven-dissipative Bose-Hubbard dimer model in the weakly coupled regime.

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  1. Nonlinear periodic orbit solutions and their bifurcation structure at the origin of soliton hopping in coupled microresonators

    nlin.PS 2025-08 conditional novelty 6.0 of 10

    Soliton hopping in a photonic dimer arises via a subcritical Hopf bifurcation from a stable soliton branch, while in a trimer it arises supercritically from an already unstable branch, leading to different pump power ...

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