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Location(s) Number of offers available1Company/InstitutePhysique des lasers, atomes et moléculesCountryFranceCityVILLENEUVE D ASCQ Contact City VILLENEUVE D ASCQ Website http://www.phlam.univ-lille.fr STATUS
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laser structures for backreflection-resilient operation Develop and optimize silicon plasma dispersive devices for on-chip optical isolation Fabricate heterogeneous lithium tantalate photonic isolators
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on Smart Fibre-Optic High-Power Photonics (HiPPo). The HiPPo programme (https://www.hippo-laser.co.uk/ ) is focused on understanding how to control the properties of fibre lasers, to go beyond the “fixed
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opportunities, ranging from life science to the study of fundamental physical processes in various areas. DESY offers several career opportunities also in the enabling technologies like detector or laser physics
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Postdoctoral Fellow Position in Quantum Optics and Laser Sciences Title: Postdoctoral Fellow, Experimental Physics Appointment Status: Non-tenure track Department: Department of Physics, Indiana University
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on Smart Fibre-Optic High-Power Photonics (HiPPo). The HiPPo programme (https://www.hippo-laser.co.uk/ ) is focused on understanding how to control the properties of fibre lasers, to go beyond the “fixed
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the detection of vacuum fluctuations via electro-optic sampling, incorporating realistic parameters for femtosecond few-cycle laser pulses, terahertz bandwidths, and detector electronics. (3) System Architecture
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of this joint laboratory is towards the development of innovative nanotechnologies and nanomaterials for various electronic and photonic applications. For more details, please view https://www.ntu.edu.sg/cintra
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optical systems and the use of lasers. Proficiency in data processing software e.g., Python, Matlab. Exhibits excellent professionalism and work ethics, initiative and self-motivation. Strong ability
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Associação do Instituto Superior Técnico para a Investigação e Desenvolvimento _IST-ID | Portugal | 13 days ago
internship, the student will calculate and evaluate the radiological impact of relativistic electrons accelerated by laser-plasma interaction, estimating doses and dose rates in typical laboratory scenarios