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to successfully run ultra-fast pump probe measurements; Managing undergraduate students and training graduate students with laser spectroscopy systems and general optical techniques; Researching and developing new
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femtosecond laser operation, gas-phase spectroscopy, plasma and flame synthesis of nanomaterials, laser ablation synthesis of nanomaterials. Expert in building scientific apparatus Preferred Qualifications
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the English language (oral and writing) and communications skills The following additions would be a great asset: • Expertise in glasses, defects and in ultrafast spectroscopy • Knowledge of laser physics and
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& Electronic Engineering, or a relevant discipline. You must have hands-on experimental experience and skills in THz time-domain spectroscopy, ultrafast lasers and thin film deposition. You should have a desire
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develop an ultrafast optical spectroscopy system based on transient absorption, featuring broad spectral tunability (from the infrared to the ultraviolet) and a high signal-to-noise ratio. This apparatus
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techniques needed to successfully run ultra-fast pump probe measurements; - Managing undergraduate students and training graduate students with laser spectroscopy systems and general optical techniques
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, Cold Atom Physics , Cold Atoms and Molecules , Cold QCD Group , collider physics , Collinear Fast Beam Laser Spectroscopy , Complex Quantum Systems , Computational Materials Sciences , Computational
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quantification of methane emissions in Romania Your tasks Monitor CH4 concentrations, isotopic composition as well as co-emitted species in several campaigns in Romania by laser spectroscopy (e.g. CRDS). Operation
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. The defects will be analysed by using a combination of advanced transmission electron microscopy and spectroscopy methods, as well as Raman spectroscopy and photoluminescence mapping. Your key tasks
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Institut Lumière Matière ILM- UMR 5306 CNRS / Université Claude Bernard Lyon 1 | Villeurbanne, Rhone Alpes | France | 12 days ago
scattering (BLS) has been proposed. The BLS spectra, resulting from the interaction of laser light with density fluctuations, can be interpreted as the response of the sample to an infinitesimal uniaxial