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for excellence in research, teaching and employability of our students. We are an active and vibrant department, with a strong cohort of early career academics and future leaders. We hold an Athena Swan Silver
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, preferably in experimental quantum information, quantum optics, nanophotonics, low temperature physics or other AMO physics. In the project, you will need to combine advanced optical and microwave methods
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that has recently received several instrumental upgrades suited to meet the nanofabrication challenges in quantum device fabrication including atomic layer deposition, electron beam lithography, and direct
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of advanced thermochemistry. The job includes the computational modeling of a novel thermochemical heat transformer for upgrading low-temperature waste heat from the data center. You will be part of a team of
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motional states. Initially, we will measure the gravitational force between gold particles weighing a milligram, representing a new mass scale showing gravitational forces within a system. This work is part
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building blocks for experimental platforms and quantum network architectural choices. The focus of this position is the development of a networking node based on neutral ytterbium atoms trapped in re
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of the quantum information applications. Your overall responsibility will be to lead the experimental and theoretical activities, including the quantum optical characterization and the modeling of the devices. Our
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control and data acquisition systems. Strong background in laser cooling and trapping of neutral atoms, ultra-cold quantum gases, precision measurement or a related research area is preferred. Ability
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collaboration with universities in ESA Member States; analyse various quantum platforms, such as nitrogen-vacancy centres in diamond, Rydberg and/or cold atoms, entangled photons and opto-mechanical systems, and
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evolution during reaction in aqueous solutions using optical, atomic force, and digital holographic microscopies Dynamically evolving interfacial structures will be observed using in-situ synchrotron-based