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the following will be a plus • Optical instrumentation, single-molecule/ super-resolution microscopy, magnetic/optical tweezers, ultrafast spectroscopy, or other in-situ operando imaging tools • Machine
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optics, near-infrared spectroscopy (NIRS), diffuse optics, photonics or related areas. Experience in scientific software development and programming (e.g. Python, MATLAB, C/C++, LabVIEW). Experience in
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architectures. The role will involve advanced optical spectroscopy and characterization techniques, including real-space and Fourier-space imaging, polarization- and time-resolved measurements, room-temperature
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advanced optical spectroscopy setups; measuring propagation, emission, nonlinear response, switching behaviour, photon-correlation behaviour, and coupling to detection/readout platforms; and supporting
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-molecule biophysics. Funded by NSERC and CIHR, our research group investigates the mechanical properties, folding pathways, and conformational dynamics of proteins using advanced force spectroscopy
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the Centre’s research activities in biomedical optics–related projects. To conduct research in experimental optics for diagnostics and spectroscopy by developing novel approaches for bioimaging experiments and
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the following will be a plus: • Optical instrumentation, single-molecule/ super-resolution microscopy, magnetic/optical tweezers, ultrafast spectroscopy, or other in-situ operando imaging tools • Machine
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the following will be a plus • Optical instrumentation, single-molecule/ super-resolution microscopy, magnetic/optical tweezers, ultrafast spectroscopy, or other in-situ operando imaging tools • Machine
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with MATLAB or Python, to design and optimise thermal crystals, thermal metamaterials, and nanophotonic structures. 3. Nanofabrication & Experimental Characterisation a. Fabricate thermal crystals, thermal
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the research activities of the centre in bioimaging projects. Perform research in experimental optics, bioimaging, spectroscopy, metrology and develop novel approaches for optical and nonlinear optical