International audienceWe design planar silicon antennas for controlling the emission rate of magnetic or electric dipolar emitters. Evolutionary algorithms coupled to the Green Dyadic Method lead to different optimized geometries which depend on the nature and orientation of the dipoles. We discuss the physical origin of the obtained configurations thanks to modal analysis but also emphasize the role of nanoscale design of the LDOS. We complete our study using finite element method and demonstrate an enhancement up to 2 × 10 3 of the magnetic Purcell factor in europium ions. Our work brings together random optimizations to explore geometric parameters without constraint, a first order deterministic approach to understand the optimized desig...
The dependence of the optical communication interconnects on the electronics technology is a limitat...
The Purcell effect is commonly used to increase light emission by enhancing the radiative decay of e...
10 pages, 6 figures + 10 pages of supporting informations including 17 additional figuresInternation...
International audienceWe design planar silicon antennas for controlling the emission rate of magneti...
We design planar silicon antennas for controlling the emission rate of magnetic or electric dipolar ...
Abstract We propose an axisymmetric silicon nanoresonator with designed tapered angle well for the e...
International audienceMagnetic light and matter interactions are generally too weak to be detected, ...
The Purcell effect is usually described as a modification of the spontaneous decay rate in the prese...
We optimize silicon nano-antennas to enhance and steer the emission of local quantum sources. We com...
Mie-resonant high-index dielectric nanoparticles and metasurfaces have been suggested as a viable pl...
The Purcell effect is usually described as a modification of the spontaneous decay rate in the prese...
We study theoretically the enhancement of spontaneous emission in wire metamaterials. We analyze the...
Geometric resonances in high refractive index dielectric nanoantennas enhance the local density of o...
The dependence of the optical communication interconnects on the electronics technology is a limitat...
The Purcell effect is commonly used to increase light emission by enhancing the radiative decay of e...
10 pages, 6 figures + 10 pages of supporting informations including 17 additional figuresInternation...
International audienceWe design planar silicon antennas for controlling the emission rate of magneti...
We design planar silicon antennas for controlling the emission rate of magnetic or electric dipolar ...
Abstract We propose an axisymmetric silicon nanoresonator with designed tapered angle well for the e...
International audienceMagnetic light and matter interactions are generally too weak to be detected, ...
The Purcell effect is usually described as a modification of the spontaneous decay rate in the prese...
We optimize silicon nano-antennas to enhance and steer the emission of local quantum sources. We com...
Mie-resonant high-index dielectric nanoparticles and metasurfaces have been suggested as a viable pl...
The Purcell effect is usually described as a modification of the spontaneous decay rate in the prese...
We study theoretically the enhancement of spontaneous emission in wire metamaterials. We analyze the...
Geometric resonances in high refractive index dielectric nanoantennas enhance the local density of o...
The dependence of the optical communication interconnects on the electronics technology is a limitat...
The Purcell effect is commonly used to increase light emission by enhancing the radiative decay of e...
10 pages, 6 figures + 10 pages of supporting informations including 17 additional figuresInternation...