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applications received within the response period via the link below will be considered. Where to apply Website https://www.academictransfer.com/en/jobs/357916/postdoc-on-stable-optical-circu… Requirements
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generation of laser sources. These devices are based on a physical separation between electrical addressing and optical emission, enabling the design of addressable Tamm lasers with high potential
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the BERNARDO project, funded by the PEPR LUMA program (https://www.pepr-luma.fr/ ). The project focuses on chiroptical interactions, which play an essential role in fields such as biomolecular recognition
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of metamaterials, nanofabrication in a cleanroom environment, optical characterization, construction/modification of optical characterization tools, and test stations for fabricated devices. In
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concerning in view of the decline of Moore’s law. The project is to implement artificial neural networks using optics rather than electronics. Optical neural networks would enable us to enhance both the power
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, and analysis of multicolor images. - Advanced optical microscopy (nanoscopy) - Image acquisition and analysis - Microfluidics - Fluorescent labeling protocol - Multimodal characterization
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Number req24878 Department James C Wyant Coll Optical Sci Department Website Link https://www.optics.arizona.edu/ Location Main Campus Address Tucson, AZ USA Position Highlights The Wyant College
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National Aeronautics and Space Administration (NASA) | Fields Landing, California | United States | about 6 hours ago
: the Polycyclic Aromatic Hydrocarbon Infrared Spectroscopic Database (PAHdb; www.astrochemistry.org/pahdb ), the Optical Constants Database (OCdb; ocdb.smce.nasa.gov), and the (Nano)grain Spectral and Morphological
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polymer blending and colloidal lithography. Low-cost fabrication processes will be developed and optimized, and their performance will be analyzed using optical spectroscopy. Results will then be compared
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of matter at the atomic scale. The postdoctoral researcher will lead the theory component of a research program, developing microscopic models of impurity-host coupling and identifying optical signatures