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our group, have shown that luminescent centers in hBN are excellent candidates for the development of future light-based quantum technologies working close to or at room temperature. In the Quantum
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research group "AI and big data in Radiation Oncology" (read more about the group here: https://www.en.auh.dk/departments/the-danish-centre-for-particle-therapy/research/research-groups/artificial
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on this project, you will: Design and Model : Develop novel concepts for integrating photonic systems (e.g., laser-based, integrated optic components) with advanced microwave scattering/diagnostic
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teaching experiments that can be brought into classes for hands-on student activities. The setups will realise advanced concepts including quantum squeezed light, control and sensing with single spins in
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. The open positions are attached to three different collaborative projects with related but distinct goals, all making use of our expertise in squeezing-based entangled states of light: ClusterQ (ERC): A
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around the brightest solar-type stars in the Southern Hemisphere, targeting extreme RV precision. With first light expected in the lab in late 2026/early 2027 and 6 months later at the telescope, this is
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Robotic Systems Mechanical/Mechatronics design with CAD software Rapid prototyping (3D printing, laser cutting) Medical and surgical robotics design Embedded systems programming Robot Operating System (ROS
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-FISH), expansion microscopy, confocal laser scanning microscopy, scanning or transmission electron microscopy, cryo-electron tomography (cryoTEM). Candidates who have prior experience with imaging
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-FISH), expansion microscopy, confocal laser scanning microscopy, scanning or transmission electron microscopy, cryo-electron tomography (cryoTEM). Candidates who have prior experience with imaging
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for infection and root nodule organogenesis will be the responsibility of the postdoc. Your profile Training and experience with plant molecular genetics, single cell analyses, light and confocal microscopy