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Dipole-dipole interactions mediated by a photonic flat band

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arxiv 2405.20382 v4 pith:GXDUPMXZ submitted 2024-05-30 quant-ph cond-mat.mes-hall

classification quant-phcond-mat.mes-hall
keywords bandsinteractionsclssdipole-dipoleenergyflatlengthlocalization
verification ladder T0 review T1 audit T2 compute T3 formal
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Flat bands (FBs) are energy bands with zero group velocity, which in electronic systems were shown to favor strongly correlated phenomena. Indeed, a FB can be spanned with a basis of strictly localized states, the so called "compact localized states" (CLSs), which are yet generally non-orthogonal. Here, we study emergent dipole-dipole interactions between emitters dispersively coupled to the photonic analogue of a FB, a setup within reach in state-of the-art experimental platforms. We show that the strength of such photon-mediated interactions decays exponentially with distance with a characteristic localization length which, unlike typical behaviours with standard bands, saturates to a finite value as the emitter's energy approaches the FB. Remarkably, we find that the localization length grows with the overlap between CLSs according to an analytically-derived universal scaling law valid for a large class of FBs both in 1D and 2D. Using giant atoms (non-local atom-field coupling) allows to tailor interaction potentials having the same shape of a CLS or a superposition of a few of these.

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  1. Photon-mediated interactions by Floquet photonic lattices

    quant-ph 2025-06 conditional novelty 7.0 of 10

    Floquet-driven photonic lattices produce π-gap bound states that mediate coherent emitter interactions, including between detuned emitters.

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