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the Novo Nordisk Foundation, that will drive research and innovations at multiple levels - from developing scalable quantum processor technologies to solutions for the quantum-classical control and readout
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to the best research institutions around the world. Continuous scientific mentoring by your scientific advisor as well as feedback and wide-ranging expertise from the whole group in multiple facets of quantum
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institutions around the world Continuous scientific mentoring by your scientific advisor as well as feedback and wide-ranging expertise from the whole group in multiple facets of quantum technology and
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environment for PhD candidates, with multiple seminars, working groups, colloquia, and a doctoral school, which also gives access to multiple training opportunities, including courses on general research skills
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the whole group in multiple facets of quantum technology and optimization Opportunity of participating in (international) conferences and project meetings Participation in overarching seminars including
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: Typically, PhD students working on an experimental setup dedicated to the trapping and cooling of ions, atoms or molecules acquire multiple technical skills not only in quantum sciences and technologies but
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coupling distant spins. For quantum simulation, we are interested in developing novel methods for Hamiltonian engineering and for probing systems of multiple interacting electron charges or spins, to enable
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at the forefront of quantum technology through a collaborative environment involving multiple universities, industrial partners, and experimental efforts. The candidate will have opportunities to participate in
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Max Planck Institute for the Physics of Complex Systems • | Dresden, Sachsen | Germany | about 6 hours ago
programme No Description/content The IMPRS for "Quantum Dynamics and Control" is a graduate school with its headquarters at the Max Planck Institute for the Physics of Complex Systems in Dresden/Germany and
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). Our goal is to achieve atomic-precision synthesis and exploration of new planar carbon lattices (PCLs) for next-generation quantum materials, functional precision membranes, optoelectronic and