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. We expect you to have a good recent publication record in international journals, experience of the modelling of optical communication systems and nonlinear PDEs, experience of developing new digital
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-edge research in optical, mechanical and structural properties of nanostructures and nanoparticles. We combine expertise in nanofabrication, laser science, nonlinear optics, sensing, advanced imaging
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-short pulse laser physics / optical frequency combs Posting ID: 25.132-4210 Nuclear spectroscopy of 229 Thorium is a highly interesting field of research at the intersection between nuclear and atomic
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spans fundamental quantum science and applications in quantum optics, solid-state spins, quantum emitters, quantum memory, and nonlinear optical devices, and will include work on defects in diamond
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ultrafast nonlinear optical spectroscopy techniques—such as transient absorption and impulsive vibrational spectroscopy—the role aims to probe polariton-controlled electronic and nuclear dynamics occurring
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and guidance system for these micro-swimmers, interacting with real-time optical visualization in a microfluidic network. • Study of the fidelity of the movement of micro-swimmers to the set trajectory
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nonlinear optics, with a deep understanding of the underlying physics. Experience in laser physics is a plus. Experience in one or more of the following is an advantage: ultrafast laser-material processing
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additional modification. This phenomenon gives rise to out-of-plane ferroelectric domains. The goal of this postdoctoral position is to optically detect, track, and ultimately control the ferroelectric state
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-short pulse laser physics / optical frequency combs Posting ID: 25.132-4210 Nuclear spectroscopy of 229Thorium is a highly interesting field of research at the intersection between nuclear and atomic
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modern challenges in sustainability, nonlinear optics, photonic and quantum technologies, new nanostructured materials, sensing, imaging and clean energy. The group adopts an interdisciplinary approach