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. The successful candidate will be joining the Macroscopic Quantum Optics Theory group led by Prof. Dr. Oriol Romero-Isart. The group has several active research theoretical topics focused on the interaction
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. The successful candidate will be joining the Atomic Quantum Optics group led by Prof. Dr. Morgan Mitchell in an experiment on the interaction of single photons and entangled photon pairs with individual trapped
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communication / Quantum key distribution / Quantum networks Development of testbeds for quantum communication Experimentation equipment of quantum communication infrastructure Free space optical communication
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to develop novel scalable technologies for quantum optical communications. The project is on developing quantum materials and photonic structures to operate in the telecom wavelength as quantum light sources
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strontium atoms in an optical lattice, and aims at investigating large spin Fermi-Hubbard models with single-atom and single-site resolution by imaging them in a quantum gas microscope. The second one focuses
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detection, devices with advanced functionalities etc.) Many advanced tools will be available such as (dilution) cryostats with optical access, cryogenic scanning near-field microscope, optical quantum twist
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experimental aspects of: Atto-Science, Ultrafast Optics & Nonlinear Optics Photovoltaics, Thermal Photonics & Solar Fuels Optical Sensing & Optoelectronics NanoPhotonics & NanoMechanics Ultracold Quantum Gases
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Photovoltaics, Thermal Photonics & Solar Fuels Optical Sensing & Optoelectronics NanoPhotonics & NanoMechanics Ultracold Quantum Gases Quantum and Low-Dimensional Materials Quantum Communications, Sensing
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lasers based on colloidal quantum dot technology. The aim is to develop the first chip-integrated infrared quantum dot laser emitting in the telecom wavelength regime as well as in longer wavelengths
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& Optoelectronics NanoPhotonics & NanoMechanics Ultracold Quantum Gases Quantum and Low-Dimensional Materials Quantum Communications, Sensing & Simulation Quantum Optics & Quantum Information Nanophotonics, Condensed