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. Solid-state emitters coupled to nanophotonic waveguides are a promising platform for quantum devices, as this element can be integrated into complex photonic chips. Yet, preserving the full coherence properties of the coupled emitter-waveguide system is challenging because of the complex and dynamic electromagnetic landscape found in the solid state. Here, we review progress toward coherent light-matter interactions with solid-state quantum emitters coupled to nanophotonic waveguides. We first lay down the theoretical foundation for coherent and nonlinear light-ma...
In recent years, the controlled coupling of single-photon emitters to propagating surface plasmons h...
Understanding large-scale interacting quantum matter requires dealing with the huge number of quanta...
Photonic coherent emission effects, such as superradiance and subradiance, can be achieved only when...
Coherent quantum optics, where the phase of a photon is not scrambled as it interacts with an emitte...
International audienceSingle photons constitute a main platform in quantum science and technology: t...
The parametric interaction of light beams in nonlinear materials is usually thought to be too weak t...
Abstract- New opportunities of manipulating light Creating a strong photon-photon interaction at the...
Photon-mediated coupling between distant matter qubits may enable secure communication over long dis...
7 pags., 4 figs.Coherent photon-emitter interfaces offer a way to mediate efficient nonlinear photon...
We study interactions between photons and matter in order to obtain a better understanding of such p...
Modern nano-fabrication technologies allow to realize photonic propagation and confinement to unprec...
Establishing a highly efficient photon-emitter interface where the intrinsic linewidth broadening is...
Photonic nanostructures provide a means of tailoring the interaction between light and matter and th...
Establishing a highly efficient photon-emitter interface where the intrinsic linewidth broadening is...
Future scalable photonic quantum information processing relies on the ability of integrating multipl...
In recent years, the controlled coupling of single-photon emitters to propagating surface plasmons h...
Understanding large-scale interacting quantum matter requires dealing with the huge number of quanta...
Photonic coherent emission effects, such as superradiance and subradiance, can be achieved only when...
Coherent quantum optics, where the phase of a photon is not scrambled as it interacts with an emitte...
International audienceSingle photons constitute a main platform in quantum science and technology: t...
The parametric interaction of light beams in nonlinear materials is usually thought to be too weak t...
Abstract- New opportunities of manipulating light Creating a strong photon-photon interaction at the...
Photon-mediated coupling between distant matter qubits may enable secure communication over long dis...
7 pags., 4 figs.Coherent photon-emitter interfaces offer a way to mediate efficient nonlinear photon...
We study interactions between photons and matter in order to obtain a better understanding of such p...
Modern nano-fabrication technologies allow to realize photonic propagation and confinement to unprec...
Establishing a highly efficient photon-emitter interface where the intrinsic linewidth broadening is...
Photonic nanostructures provide a means of tailoring the interaction between light and matter and th...
Establishing a highly efficient photon-emitter interface where the intrinsic linewidth broadening is...
Future scalable photonic quantum information processing relies on the ability of integrating multipl...
In recent years, the controlled coupling of single-photon emitters to propagating surface plasmons h...
Understanding large-scale interacting quantum matter requires dealing with the huge number of quanta...
Photonic coherent emission effects, such as superradiance and subradiance, can be achieved only when...