International audienceWe propose a novel “hourglass”-shaped design for highly efficient generation and collection of quantum light. The design features a quantum dot in a photonic nanowire sandwiched between tapered Bragg reflectors. For a Purcell factor of 9, the design features a spontaneous emission coupling of0.993 to the cavity mode enabled by the strong dielectric screening of radiation modes. Thanks to a highly reflecting bottom mirror, we furthermore demonstrate a collection efficiency of 0.95 to a Gaussian profile. Finally, this photonic structure features a broad operation bandwidth, as large as 11 nm
This thesis presents the realization of an efficient single-photon source based on an InAs quantum d...
Nanowire waveguides with controlled shape are promising for engineering the collection efficiency of...
We introduce a hybrid metal–dielectric nanoantenna consisting of a metallic bullseye nanostructure a...
International audienceWe propose a novel “hourglass”-shaped design for highly efficient generation a...
International audienceTo deliver an optimal performance for photonic quantum technologies, semicondu...
Cette thèse présente la réalisation d'une source de photons uniques basée sur une boîte quantique In...
To implement quantum light sources based on quantum emitters in applications, it is desirable to imp...
We present a novel single-mode single photon source exploiting the emission of a semiconductor quan...
International audienceEfficient coupling between a localized quantum emitter and a well defined opti...
In this thesis work, I studied individual quantum dots embedded in one-dimensional nanostructures ca...
Quantum communication as well as integrated photonic circuits require single photons propagating in ...
Spontaneous emission of luminescent material is strongly dependent on the surrounding electromagneti...
Single quantum dots embedded in tapered nanowire waveguides have emerged as leading candidates for d...
International audienceThe development of efficient solid-state sources of single photons is a major ...
Coupling light from a point source to a propagating mode is an important problem in nano-photonics a...
This thesis presents the realization of an efficient single-photon source based on an InAs quantum d...
Nanowire waveguides with controlled shape are promising for engineering the collection efficiency of...
We introduce a hybrid metal–dielectric nanoantenna consisting of a metallic bullseye nanostructure a...
International audienceWe propose a novel “hourglass”-shaped design for highly efficient generation a...
International audienceTo deliver an optimal performance for photonic quantum technologies, semicondu...
Cette thèse présente la réalisation d'une source de photons uniques basée sur une boîte quantique In...
To implement quantum light sources based on quantum emitters in applications, it is desirable to imp...
We present a novel single-mode single photon source exploiting the emission of a semiconductor quan...
International audienceEfficient coupling between a localized quantum emitter and a well defined opti...
In this thesis work, I studied individual quantum dots embedded in one-dimensional nanostructures ca...
Quantum communication as well as integrated photonic circuits require single photons propagating in ...
Spontaneous emission of luminescent material is strongly dependent on the surrounding electromagneti...
Single quantum dots embedded in tapered nanowire waveguides have emerged as leading candidates for d...
International audienceThe development of efficient solid-state sources of single photons is a major ...
Coupling light from a point source to a propagating mode is an important problem in nano-photonics a...
This thesis presents the realization of an efficient single-photon source based on an InAs quantum d...
Nanowire waveguides with controlled shape are promising for engineering the collection efficiency of...
We introduce a hybrid metal–dielectric nanoantenna consisting of a metallic bullseye nanostructure a...