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Field
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research in the field of laser diagnostics of nonequilibrium plasmas, for atmospheric reentry flow applications and for plasma-liquid interaction applications. The duties also include preparing and
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-CHM-00003. The successful candidate will adapt a dual-frequency comb laser for use in conjunction with a unique tip-enhanced spectroscopy instrument, currently under development in Prof. Rabitz's lab
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numerical results with observations from scanning and transmission electron microscopy provided by the partners of the ANR project IMP3D (https://anr.fr/Projet-ANR-24-CE08-3737 . - Select a discrete
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involve conducting linear stability analyses of 3D flows of the algal solution for specific boundary conditions (wall heating, solar radiation, free surface or not). Additional 3D numerical simulations will
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platform based on fully optical inelastic light-scattering methods probing thermal and non-thermal phonons/acoustic waves. This approach will provide fundamental insight into the anisotropic elastic
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a project that aims to develop luminescent carbon dots for light-emitting applications. The position is full-time for two years, starting on April 1, 2026, or by agreement. The deadline for submitting
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facilities and advanced spectroscopic instrumentation: CW laser, ultrafast Ti:Sapphire laser attached to second/third harmonic generator and streak camera and the optical parametric oscillator (OPO). Our
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Theory. The project also has connections with gravitational-wave physics, with the aim of providing new calculations of key observables, such as waveforms and gravitational radiation. This project also has
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newly created Laboratory of Material Science, Laser, and Nanotechnology under the supervision of Prof. Rashid Ganeev . The members of our laboratory work on the applications of lasers for material science
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photosynthetic membranes. Specifically, pump-probe ultrafast nanoscopy of transport in model OPVs and light-harvesting complexes. Specifically, advance structured excitation methods for low light level exciton