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Super plasmonic structures based on fluorescent nano-aggregates for the generation of quantum states of light

The goal of this thesis is to enhance the collective effects at low temperature on aggregates covered with gold by developing new structures based on these superparticles. The aggregates will be organized in super-structures in order to enhance the collective effects. For this, we know how to manipulate the aggregates using an atomic force microscope and to form chains or networks of superparticles (Figure 1b). FDTD simulations are carried out in parallel to optimize the super-structure. The student will be in charge of the development of these new sources and their studies with a confocal microscope system operating at room or cryogenic temperature associated with a photon counting device (Hanbury Brown and Twiss setup), and spectrophotometric devices.

from October 1, 2022 to September 30, 2025

From 1st october 2022 to 30th september 2025

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Organisme : UVSQ/CNRS
45, avenue des États-Unis
78000 Versailles
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Additional information
Contact :
Stéphanie Buil
Tel : 01 39 45 44 86
Courriel :