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Superradiance paradox in waveguide lattices

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arxiv 2008.06540 v1 pith:KYZC65MP submitted 2020-08-14 physics.optics quant-ph

Superradiance paradox in waveguide lattices

classification physics.optics quant-ph
keywords paradoxdynamicsphotonsuperradiancewaveguidecollectivedecayemission
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

Recently, it has been suggested that the collective radiative decay of two point-like quantum emitters coupled to a waveguide, separated by a distance comparable to the coherence length of a spontaneously emitted photon, leads to an apparent $^{\prime}$superradiance paradox$^{\prime}$ by which one cannot decide whether independent or collective emission occurs. The resolution of the paradox stems from the strong non-Markovian dynamics arising from the delayed field-mediated atom interaction. Here we suggest an integrated optics platform to emulate the superradiance paradox, based on photon escape dynamics in waveguide lattices. Remarkably, Markovian decay dynamics and independent photon emission can be restored by frequent (Zeno-like) observation of the system.

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