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Microwave photonics with superconducting quantum circuits
In the past 20 years, impressive progress has been made both experimentally and
theoretically in superconducting quantum circuits, which provide a platform for manipulating …
theoretically in superconducting quantum circuits, which provide a platform for manipulating …
Polaritonic chemistry with organic molecules
We present an overview of the general concepts of polaritonic chemistry with organic
molecules, ie, the manipulation of chemical structure that can be achieved through strong …
molecules, ie, the manipulation of chemical structure that can be achieved through strong …
Coherent nonlinear optics of quantum emitters in nanophotonic waveguides
Coherent quantum optics, where the phase of a photon is not scrambled as it interacts with
an emitter, lies at the heart of many quantum optical effects and emerging technologies …
an emitter, lies at the heart of many quantum optical effects and emerging technologies …
Nonreciprocal and chiral single-photon scattering for giant atoms
Quantum optics with giant atoms has provided a new paradigm to study photon scatterings.
In this work, we investigate the nontrivial single-photon scattering properties of giant atoms …
In this work, we investigate the nontrivial single-photon scattering properties of giant atoms …
Chiral topological photonics with an embedded quantum emitter
Topological photonic interfaces support topologically nontrivial optical modes with helical
character. When combined with an embedded quantum emitter that has a circularly …
character. When combined with an embedded quantum emitter that has a circularly …
Chiral and nonreciprocal single-photon scattering in a chiral-giant-molecule waveguide-QED system
We study chiral and nonreciprocal single-photon scattering in a chiral-giant-molecule
waveguide-QED system. Here, the giant molecule consists of two coupled giant atoms …
waveguide-QED system. Here, the giant molecule consists of two coupled giant atoms …
Single-photon scattering and bound states in an atom-waveguide system with two or multiple coupling points
In this paper, we investigate the single-photon scattering and bound states in a one-
dimensional coupled-resonator waveguide which couples to a single artificial giant atom …
dimensional coupled-resonator waveguide which couples to a single artificial giant atom …
Room temperature chiral coupling of valley excitons with spin-momentum locked surface plasmons
We demonstrate room temperature chiral coupling of valley excitons in a transition metal
dichalcogenide monolayer with spin-momentum locked surface plasmons. At the onset of …
dichalcogenide monolayer with spin-momentum locked surface plasmons. At the onset of …
Nonreciprocal frequency conversion with chiral -type atoms
In this paper, we begin with a model of a Λ-type atom whose both transitions are chirally
coupled to a wave guide and then extend the model to its giant-atom version. We investigate …
coupled to a wave guide and then extend the model to its giant-atom version. We investigate …
Targeted photonic routers with chiral photon-atom interactions
The photonic router is a key device in optical quantum networks. Conventional routers,
however, can only transfer a photon from the input port to the desired port probabilistically …
however, can only transfer a photon from the input port to the desired port probabilistically …