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Field
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optics, magnetic resonance and nanoscale fabrication to detect and control individual spins associated to defect centers. With these controlled systems of coupled spins, we aim to answer questions such as
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order to explain the emergence and effects of urban governance, you will analyse the process of decision-making and the implementation of policies in the context of power relations, political ideas and
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. The zero-emission laboratory of MARIN can be used for validation of the control strategies with real components. The candidate will be part of a large team of PhD students working on different aspects
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and Explainable AI is a plus; Analytical and creative mindset, with the ability to work independently and in teams; Excellent command of English; willingness to work in an international, multi-sector
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of interwar blockades. You will focus on the operation of blockades, their interaction with economic, diplomatic/legal and military measures taken by the belligerents, criteria for success or failure, and their
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their applications for quantum science and technology. We use a combination of quantum optics, magnetic resonance and nanoscale fabrication to detect and control individual spins associated to defect
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and Explainable AI is a plus; Analytical and creative mindset, with the ability to work independently and in teams; Excellent command of English; willingness to work in an international, multi-sector
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. We are looking for PhD students to join the Hermans Lab and take the next step and build a next-generation quantum network. Can we control multiple of these REIs within the same chip and perform two
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the interest, however defined, of political aims) and one or more concrete case studies of interwar blockades. You will focus on the operation of blockades, their interaction with economic, diplomatic/legal and
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-generation quantum network. Can we control multiple of these REIs within the same chip and perform two-qubit gates between them? Using such coupled emitters, is it possible to run advanced entanglement