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Materials, Bioinspired Materials and Sustainable Materials. For more details, please view https://www.ntu.edu.sg/mse/research. We are looking for a Research Fellow to explore nonlinear optical properties
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nonlinear optical applications. The roles of this position include: Conduct theoretical and numerical research and develop theoretical models for low-dimensional material nanophotonics. Apply numerical models
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in the area of Nonlinear Optics to conduct both theoretical and experimental studies on the nonlinear dynamics of ultrafast fiber lasers, with a focus on understanding the complex behaviors
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also provide guidance and supervision on the use of specialised equipment and experimental techniques. You will actively stay abreast of the latest developments in nanophotonics, nonlinear optics
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effects and the creation of polaritonic topological lattices Perform nonlinear optical measurements, using interferometric, angle-resolved, and correlation type techniques Record, manage, and store
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. To be successful in this role, you will have: A PhD (or nearing completion) in Physics (e.g. atomic physics, quantum optics, or solid-state physics) or closely related fields. Proven expertise in
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Lawrence Berkeley National Laboratory - Nuclear Science | Berkeley, California | United States | about 14 hours ago
accelerators, nonlinear optics, optical spectrometers, and characterization of samples using laser spectroscopy methods. It will require development of experimental systems from scratch, automation
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. To be successful in this role, you will have: A PhD (or nearing completion) in Physics (e.g. atomic physics, quantum optics, or solid-state physics) or closely related fields. Proven expertise in
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driven systems; time crystals; manybody localization; polaritons and other collective excitations (e.g., plasmons, phonon polaritons, excitons, polarons); light matter interactions; linear, nonlinear and
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tool for applications in quantum sensing and quantum imaging. On the other hand, multimode pulsed squeezed coherent states can be realized through optical parametric amplification and other nonlinear