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Location: Atomic and Laser Physics, Department of Physics, Clarendon Laboratory Building, Parks Road, Oxford, OX1 3PU An exciting opportunity has arisen for a Postdoctoral Research Assistant in
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time off. To access this tool and learn more about the total value of your benefits, please click on the following link: https://resources.uta.edu/hr/services/records/compensation-tools.php CBC
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the supervision of PhD or Master students. The recruited person will exploit the existing test benches (Beta source and infrared laser) developed for the first EICROC protype (EICROC0, 4x4 channels) to characterize
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enable the use of a crossed dipole trap with a 50W laser at 1.1μm. This trap will also need to be built. The opening of the vacuum chamber has been used to install a rotating retro-reflection mirror
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manufacturing capabilities, allowing us to manufacture more versatile optical systems, including lasers, cavities, frequency references and more. If successful, you will be able to join OpticsFoundry and bring
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measurement techniques such as particle image velocimetry (PIV), laser Doppler velocimetry (LDV), and hot- or cold-wire anemometry is highly desirable. Computational Fluid Mechanics position: - PhD in
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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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to achieve continuous Bose-Einstein condensation [Nature 606, 683 (2022) ]. We are building two types of such clocks: a superradiant clock and a zero-deadtime clock. A superradiant clock is a laser that lases
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) microscopy, FLIM, STED, lattice lightsheet microscopy, fluorescence correlation spectroscopy (FCS), image processing and analysis and spectral imaging. More information about the ABIF can be found at: http
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such as protecting embedded systems from vulnerabilities rooted in sensor physics, studying the impact of physical signals (e.g., acoustics, lasers, electromagnetic emissions) on AI and sensing systems, and