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combining optical sensing approaches, which will prevent signal interference and allow for simultaneous assessment of multiple markers (multiplexing and multifunctionality). Besides the biomarkers newly
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-time (100%) PhD position on Optical Coherence Tomography to assess the structural and mechanical properties of the eardrum and inner ear under the supervision of Professor Sam Van der Jeught (InViLab
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position within a Research Infrastructure? No Offer Description Our research focuses on computational imaging for biomedical applications. By integrating advanced numerical methods with customized optical
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position within a Research Infrastructure? No Offer Description Our research focuses on computational imaging for biomedical applications. By integrating advanced numerical methods with customized optical
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-time (100%) PhD position on Optical Coherence Tomography to determine eardrum stiffness in-vivo under the supervision of Professor Sam Van der Jeught (University of Antwerp) and Dr. Manuel Marques
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; Midlands Graduate School Doctoral Training Partnership | Nottingham, England | United Kingdom | 17 days ago
ESRC DTP Strategic Joint Studentship University of Nottingham and University of Birmingham The Midlands Graduate School is an accredited Economic and Social Research Council (ESRC) Doctoral Training Partnership (DTP). One of 15 such partnerships in the UK, the Midlands Graduate School is a...
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monitor its state while in use. It has been of increasing interest for the last decades due to numerous advantages in terms of security, cost, and environmental impacts. Optical fiber sensors are very
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and Nanooptics group at the Laboratory of Organic Electronics at Linköping University. The PhD student will join our ERC-funded project on dynamic organic optical metasurfaces, with prospective
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luminescence changes in response to external stimuli. The goal of the project is to read optical nanosensors using pulsed optical EPR detection and tracking spectral changes. The student will design and
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An optical quantum memory, a device which can store and retrieve an arbitrary quantum state at the single photon level, has been identified as a significant cornerstone of photonic quantum