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within the Solid-state Quantum Technologies team (S2QT – https://solidstatequantumtech-l2c.fr/ ) of the Charles Coulomb Laboratory in Montpellier. The doctoral work will be supervised by Vincent Jacques
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expertise in quantum electrodynamics and first-principles calculations. Where to apply Website https://jobrxiv.org/job/theory-of-nanophotonics-group-27778-phd-on-infrared-nan… Requirements Additional
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matter physics, and quantum optics. The doctoral candidate position is funded by the Marie Skłodowska-Curie Doctoral Network SPARK. The network offers a structured international training environment with
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PhD position in Experimental Physics with focus on photonics and materials science (applied aspects)
The project will develop ultrafast optical logic and memory concepts using spatiotemporal metamaterials. The doctoral candidate will design metamaterial structures coupled to quantum emitters for ultrafast
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Ever wondered what keeps your data flawless, and secret, as it travels through an optical fibre, even against the quantum computers on the horizon? The answer is error-correcting codes: clever maths
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the Atomic Quantum Optics group led by Prof. Dr. Morgan Mitchell. Our PhD-program brings together top-level training and teaching for young scientists , benefiting from the extensive course offerings of local
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networks for quantum communication and networking. In contrast to classical optical signals, quantum states are extremely fragile and degrade rapidly due to loss, noise, and decoherence, especially over long
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to photonic structures, in particular plasmonic structures, whose resonances are confined within a few nanometres. The equipment and experimental setups for quantum optics experiments (lasers, cryostats
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tunneling diode (RTD) excitable dynamics with quantum-dot active devices capable of providing a nonlinear amplifying response to extremely weak optical stimuli. These photonic neurons will be realized as
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infrastructure? Join us to develop innovative photonic technologies that enable ultra-fast, energy-efficient, and highly scalable optical interconnects for next-generation AI compute clusters. Information