activity
20032023
most citedStrong coupling of single emitters to surface plasmons

338 citations · 698 across the 10 of their papers we have counts for

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Showing 2018Show all

9 papers · 1 filter

cond-mat.quant-gas2018

Interaction-induced transparency for strong-coupling polaritons

Johannes Lang, Darrick E. Chang, Francesco Piazza

The propagation of light in strongly coupled atomic media takes place through the formation of polaritons - hybrid quasi-particles resulting from a superposition of an atomic and a…

cond-mat.quant-gas2018

Non-equilibrium diagrammatic approach to strongly interacting photons

Johannes Lang, Darrick E. Chang, Francesco Piazza

We develop a non-equilibrium field-theoretical approach, based on a systematic diagrammatic expansion, for strongly interacting photons in optically dense atomic media. We consider…

quant-ph2018

Topological quantum optics using atom-like emitter arrays coupled to photonic crystals

Janos Perczel, Johannes Borregaard, Darrick E. Chang +2

We propose a nanophotonic platform for topological quantum optics. Our system is composed of a two-dimensional lattice of non-linear quantum emitters with optical transitions embed…

quant-ph2018

Waveguide-mediated interaction of artificial atoms in the strong coupling regime

Mohammad Mirhosseini, Eunjong Kim, Xueyue Zhang +6

Waveguide quantum electrodynamics studies photon-mediated interactions of quantum emitters in a one-dimensional radiation channel. Although signatures of such interactions have bee…

quant-ph2018

Single-photon bound states in atomic ensembles

Yidan Wang, Michael J. Gullans, Antoine Browaeys +3

We illustrate the existence of single-excitation bound states for propagating photons interacting with two-level atoms. These bound states can be calculated from an effective s…

quant-ph2018

Critical open-system dynamics in a one-dimensional optical lattice clock

Loïc Henriet, James S. Douglas, Darrick E. Chang +1

There have been concerted efforts in recent years to realize the next generation of clocks using alkaline earth atoms in an optical lattice. Assuming that the atoms are independent…