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, is one of the world's leading laboratories in the field of metrology, primary time-frequency references and interferometry with cold atoms. The laboratory develops state-of-the-art atomic clocks and
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films and devices, or devices involving superconductor with graphene and other 2D materials, or ferroelectric devices. The successful candidate will lead in one of the areas of synthesis and quantum
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, provide novel assets to expand the toolbox of quantum simulation to more complex models. In the group, we have two experiments working with cold strontium atoms. The first one exploits ground state
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wide range of material parameters. The CFN develops and utilizes advanced capabilities for studies of Nanomaterials in Operando Conditions for characterizing materials and reactions at the atomic scale
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(Switzerland). For future experiments investigating the nature and properties of cold and hot QCD matter produced in ultra-relativistic collisions such as at the LHC or at the Electron Ion Collider (EIC
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(Switzerland). For future experiments investigating the nature and properties of cold and hot QCD matter produced in ultra-relativistic collisions such as at the LHC or at the Electron Ion Collider (EIC
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atom platforms (BEC, Rydberg atoms) and quantum circuits. Requirements Research FieldPhysics » ThermodynamicsEducation LevelPhD or equivalent Skills/Qualifications Solid knowledge of Quantum Information
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Vanderbilt University Dept. of Earth and Environmental Sciences | Nashville, Tennessee | United States | about 1 month ago
and four working cold seal pressure vessel systems are available for experiments. Experimental materials will be analyzed using a FIB-SEM, Raman spectroscopy, and Picarro for oxygen and hydrogen
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14 Months, Fixed-Term, Whole-Time Post Position Summary Davis Group research concentrates upon the fundamental physics of electronic, magnetic, atomic and space-time quantum matter. A specialty is
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first postdoc position (two years) is on single crystal X-ray diffraction studies of advanced materials. The project involves electron density analysis using the multipole formalism, very low temperature