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the form of coatings, ablation and high-heat-flux testing rigs, and characterisation using secondary electron imaging, X-ray diffractometry, electron backscattered diffraction, transmission electron
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ESPCI Ecole supérieure de physique et de chimie industrielles de la ville de Paris (PSL) | Paris 15, le de France | France | about 1 month ago
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, life sciences, advanced materials and magnetism. The second branch has a stronger focus on exploring coherence, with diffraction imaging, holography and x-ray photon correlation spectroscopy (XPCS
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optimization of automated imaging workflows using the IceBear system. This includes developing streamlined pipelines that guide samples from initial crystal identification through to diffraction data collection
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. This PhD project will focus on the design and development of UHT ceramics in the form of coatings, ablation and high-heat-flux testing rigs, and characterisation using secondary electron imaging, X-ray
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of novel optical methods for nanoscale dimensional measurements using the NIST 193 nm Microscope: a newly upgraded, custom-built, world-class high-magnification optical imaging platform optimized
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to reliable manufacturing of the next generation computing devices. Computational imaging methods such as coherent diffractive imaging, Fourier ptychography, structured illumination techniques, and other super
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I supervise computational projects in electron microscopy imaging for investigating materials at atomic resolution. Some projects centre on analysing experimental data acquired by experimental
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inside hadrons, and the emergence of gluon saturation at high energies. A central goal of the project is to build a three-dimensional picture of hadron structure, encoding both the longitudinal momentum
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of mineralogical characterization of materials (pictorial and others) to the understanding of rock surfaces. The use of hyperspectral imaging, which is non-invasive and non-destructive, is central to current