International audienceAbstract Light emission of europium (Eu 3+ ) ions placed in the vicinity of optically resonant nanoantennas is usually controlled by tailoring the local density of photon states (LDOS). We show that the polarization and shape of the excitation beam can also be used to manipulate light emission, as azimuthally or radially polarized cylindrical vector beam offers to spatially shape the electric and magnetic fields, in addition to the effect of silicon nanorings (Si-NRs) used as nanoantennas. The photoluminescence (PL) mappings of the Eu 3+ transitions and the Si phonon mappings are strongly dependent of both the excitation beam and the Si-NR dimensions. The experimental results of Raman scattering and photoluminescence a...
Semiconductor nanowires have an excellent ability to trap, guide, scatter or absorb light thanks to ...
Semiconductor nanowires have an excellent ability to trap, guide, scatter, or absorb light for speci...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
International audienceAbstract Light emission of europium (Eu 3+ ) ions placed in the vicinity of op...
Similar to their plasmonic counterparts, dielectric nanoantennas have the ability to manipulate the ...
\u3cp\u3eControlling light emission from quantum emitters has important applications, ranging from s...
International audienceElectric and magnetic optical fields carry the same amount of energy. Neverthe...
Controlling light emission from quantum emitters has important applications, ranging from solid-stat...
Controlling light emission from quantum emitters has important applications, ranging from solid-stat...
Controlling light emission from quantum emitters has important applications, ranging from solid-stat...
We study light emission from square arrays of Mie-resonant silicon nanoantennas situated on a fluore...
Semiconductor nanowires have an excellent ability to trap, guide, scatter or absorb light thanks to ...
Semiconductor nanowires have an excellent ability to trap, guide, scatter, or absorb light for speci...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
International audienceAbstract Light emission of europium (Eu 3+ ) ions placed in the vicinity of op...
Similar to their plasmonic counterparts, dielectric nanoantennas have the ability to manipulate the ...
\u3cp\u3eControlling light emission from quantum emitters has important applications, ranging from s...
International audienceElectric and magnetic optical fields carry the same amount of energy. Neverthe...
Controlling light emission from quantum emitters has important applications, ranging from solid-stat...
Controlling light emission from quantum emitters has important applications, ranging from solid-stat...
Controlling light emission from quantum emitters has important applications, ranging from solid-stat...
We study light emission from square arrays of Mie-resonant silicon nanoantennas situated on a fluore...
Semiconductor nanowires have an excellent ability to trap, guide, scatter or absorb light thanks to ...
Semiconductor nanowires have an excellent ability to trap, guide, scatter, or absorb light for speci...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...