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structure, dynamics, and switching mechanisms at the nanoscale, including optical manipulation of polarization states. Design and execution of experiments demonstrating optical control of ferroelectric
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developing switching circuits based on phase change materials (PCMs). The research will primarily consist of performing electromagnetic simulations of N-to-M switching circuits of increasing complexity
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and nano-robots (e.g., conformational switching, cargo encapsulation and release). - Quantitative analysis of assembly efficiency, mechanical stability, and functional performance in vitro and, where
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order to evaluate as early as possible the switching performance and the best compromises between component parameters, conduction and switching losses. The different architectures will be evaluated in
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required: nonlinear optics (e.g. optical parametric amplifiers), electrical switching, high-frequency electronics, thermal transport physics, and beamline experiments at user facilities. Besides technical
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Research Group led by Prof. Vittoria Raffa. The successful candidate will work within the ERC Advanced Grant project “Guidance of Axonal Pathfinding via Nano-Switches”, which aims to develop innovative
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to random bifurcations, in which the flow regime switches spontaneously from one type of behavior to another over a random time period. A paradigmatic example is the Von Karman flows, where large scale
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changes in light, environment and structure switch the function of photoactive systems on and off. We obtain structural information of the different steps of such molecular switches by developing and
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Entitlement: 33 days annual leave, plus 9 buildings closed days for all full time staff. Use our total rewards calculator: https://www.hw.ac.uk/about/work/total-rewards-calculator.htm to see the value
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-sensitive elements can enable filtering, switching, or modulation functionalities within an integrated photonics framework. Share this opening! Use the following URL: https://jobs.icfo.eu/?detail=1046