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Metrology and Prototyping of Wide-Bandgap Semiconductor Quantum Nanowire Structures and Devices NIST only participates in the February and August reviews. Semiconductor quantum nanowires offer new
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of nanobiotechnology where we develop new methods to investigate biological systems, or to exploit biomolecules within nanocomponents. The Division is leading a project to develop nanowire-based platforms for rapid
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15 May 2024 Job Information Organisation/Company CNRS Department Laboratoire de Physique des Solides Research Field Physics » Condensed matter properties Physics » Solid state physics Physics » Surface physics Researcher Profile First Stage Researcher (R1) Country France Application Deadline 4...
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undergraduate education, not least in the Master of Science in Engineering Nanoscience programme at LTH. For over ten years, our research into one-dimensional semiconductor structures, called nanowires, has been
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mechanisms in a hybrid quantum system composed of diamond nitrogen vacancy (NV) spin qubits coupled via spin waves as quantum buses in magnetic waveguides (nanowires, cavities, etc.). The magnetic materials we
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nanowire single photon detectors, based on generalized time-dependent Ginzburg-Landau theory. The successful candidate will be responsible for performing theoretical analysis, guiding numerical simulations
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to generate single photons. In the Institut des Nanotechnologies de Lyon (INL – UMR CNRS 5270), we have a huge expertise in the field of nanowire-based telecom-band single photon sources. This source involves
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of nanowire-based telecom-band single photon sources. This source involves an InAs quantum dot (QD) embedded inside an InP nanowire (NW). The NW acts as a waveguide and allows a highly efficient and directional
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on semiconductor and superconductor Physics Experience on Semiconductor heterostructures analyses, 2D structures, nanowires. Excellent interpersonal skills in order to interact with co-workers promptly and
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nanostructures like nanowires, nanobelts, and tripods or 2D nanomembranes, or setting paths for the van der waals epitaxy growth mechanisms of semiconductor and oxide nanostructures. 2) Development