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an international and collaborative atmosphere. We perform both curiosity-driven and applied-research in the areas of fiber-optic systems, optoelectronics and silicon photonics. We enjoy a state-of-the-art laboratory
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economies. Optical frequency comb (OFC) sources are a new type of laser that enable operators to pack more data into existing fiber infrastructure. The team have a suite of intellectual property around OFCs
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Semiconductor Photonics Group, Trinity College Dublin | Dublin Bar, Leinster | Ireland | 27 days ago
resonators or fiber systems will be considered. They should also have laboratory experience of building and testing optical characterization systems. The ideal candidate will have demonstrated expertise in
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an international and collaborative atmosphere. We perform both curiosity-driven and applied-research in the areas of fiber-optic systems, optoelectronics and silicon photonics. We enjoy a state-of-the-art laboratory
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on some basis to robustly recover sub-wavelength information. As a postdoc, you will develop new approaches of sparsity-based subwavelength imaging through optical fibers. New techniques will connect
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Range $56,500 Type of Position Temporary Position Time Status Full-Time Required Education PhD Required Related Experience n/a Required License/Registration/Certification n/a Physical Requirements lifting
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theses What you bring to the table Successfully completed Master and PhD in physics, engineering, or a related field Theoretical and experimental experience in optics and quantum technologies Experience in
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composed of biomass (eg. micro/nano-cellulose, natural fibers like hemp) and polymers (e.g. polylacti acid, polypropylene). Under general supervision, the candidate will conduct experimental research around
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photonic crystal fibers covering 400-2400 nm and will use so-called all-normal dispersion (ANDi) fibers pumped with femtosecond lasers to achieve record low noise for spectroscopy and Optical Coherence
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Facility (LEAF) for picosecond pulse radiolysis, and a 2 MeV electron Van de Graaff for longer-timescale experiments. In particular, the candidate will employ and further refine LEAF’s picosecond Optical