Quantum Physics
[Submitted on 9 Mar 2016 (v1), last revised 30 Aug 2017 (this version, v2)]
Title:Atom-atom interactions around the band edge of a photonic crystal waveguide
View PDFAbstract:Tailoring the interactions between quantum emitters and single photons constitutes one of the cornerstones of quantum optics. Coupling a quantum emitter to the band edge of a photonic crystal waveguide (PCW) provides a unique platform for tuning these interactions. In particular, the crossover from propagating fields $E(x) \propto e^{\pm ik_x x}$ outside the bandgap to localized fields $E(x) \propto e^{-\kappa_x |x|}$ within the bandgap should be accompanied by a transition from largely dissipative atom-atom interactions to a regime where dispersive atom-atom interactions are dominant. Here, we experimentally observe this transition for the first time by shifting the band edge frequency of the PCW relative to the $\rm D_1$ line of atomic cesium for $\bar{N}=3.0\pm 0.5$ atoms trapped along the PCW. Our results are the initial demonstration of this new paradigm for coherent atom-atom interactions with low dissipation into the guided mode.
Submission history
From: Ana Asenjo-Garcia [view email][v1] Wed, 9 Mar 2016 02:56:30 UTC (2,108 KB)
[v2] Wed, 30 Aug 2017 21:36:56 UTC (2,756 KB)
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