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Quantum and Low-Dimensional Materials Quantum Communications, Sensing & Simulation Quantum Optics & Quantum Information Nanophotonics, Condensed Matter Physics & Light-Matter Interactions Medical Optics
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 41 minutes ago
-dimensions by tomographic mapping the cosmic structures using spectral lines such as the redshifted 21cm, CO, [CII], Lya and other optical lines. The candidate will aim at exploring and establishing
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simulations and large-scale DFT calculations at finite temperature using the Special Displacement Method (SDM) and its anharmonic extension (ASDM). Model polymorphous structures beyond the standard monomorphous
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approximation and finitie-element methods to simulate the optical response of assemblies of particles (field enhancement, scattering,...) - evaluate metrics of the devices (encoding capacity, Hamming distances
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. For further details on the clinical trial, please refer to the following link: https://pubmed.ncbi.nlm.nih.gov/34665780/ . Candidates must be highly motivated and able to work effectively in a strongly
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/optical ray tracing simulation software, e.g., Wireless Insite, Zemax Proven track record of publications in relevant IEEE journals and conferences The candidates will be considered until the position is
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attention to detail Desirable criteria Experience in plasmonics and/or metamaterials Experience in topological photonics Experience in numerical simulations Experience in near-field optical microscopy
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to explore systems in which light (near-infrared) and acoustic phonons (20–300 GHz) can be confined simultaneously. Numerical simulation and optimization of acoustic and optical resonators Design and
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Guipuzcoa City Donostia - San Sebastian Website https://www.nanogune.eu/en/nanogune/join-us/open-position/512-pre-doctoral-researcher-ultrafast-optical-control-magnetism-metamaterials-fpi-ultraman Street
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integrated circuit for optical trapping and Raman spectroscopy of biological nanoparticles. The PhD will use advanced simulation tools and state-of-the-art nanotechnology fabrication equipment to make photonic