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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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are not limited to: Atto-Science, Ultrafast Optics & Nonlinear Optics Photovoltaics, Thermal Photonics & Solar Fuels Optical Sensing & Optoelectronics NanoPhotonics & NanoMechanics Ultracold Quantum Gases
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-optical devices, Lasers, etc.), Optical properties (Nonlinear optics, Quantum optics, etc.), Optical applications (Optical information processing, Optical measurement, Optical recording, Optoelectronics
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either laser and optical physics, particle beam physics, strong-field QED or plasma physics is recommended. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR7639-SEBCOR-001
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. 122, 241107 (2023). [5] R. Boyd, Nonlinear Optics, 3rd Edition | Robert Boyd | ISBN 9780123694706 (Academic Press, 2008). [6] U. Keller, D. A. B. Miller, G. D. Boyd, T. H. Chiu, J. F. Ferguson, and M. T
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exploitation of physical parallelism, from the realization of stronger all-optical nonlinearities and scalable synaptic devices to the design of efficient photonic memory architectures to support neuromorphic
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of nonlinear and quantum-optical devices and integrated circuits, allowing control of photonic signals with light of very low intensity (down to the single-photon level) and on length scales of only a few
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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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such as quantum and nonlinear optics, biology, and chemistry. This interaction is linked to the phenomenon of Rabi splitting, which occurs when light photons strongly couple with excitons in a material
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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