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thermoreflectance optical pump-probe thermal-property measurement methods, develop and refine instrumentation, optimize protocols, and provide thermal property data for thin-film and multilayer materials that can
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simulation tools (CFD) fail at the nanoscale where these gas and vapour films dictate the physics. This project will: Develop new models for the nanoscale behaviour of thin films affected by intermolecular
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/wafer processing, thin-film processes, bonding/assembly, advanced packaging, characterization, and/or reliability testing. III–V chip/device design, fabrication and characterization, including high-speed
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-on cleanroom fabrication experience including lithography, etching, thin-film deposition, and device packaging. Interpersonal skills (e.g. ability to work independently, develop solutions under strict timelines
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materials developed within the EXPRESS programme. You will design and implement fabrication process flows within a cleanroom environment, including thin film deposition, lithography, mask design and etching
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to understand materials behaviour. Key Responsibilities: Conduct advanced characterization on thin films and nanostructure samples, especially FIB and TEM. Develop workflow for device fabrication. Develop
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materials developed within the EXPRESS programme. You will design and implement fabrication process flows within a cleanroom environment, including thin film deposition, lithography, mask design and etching
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manufacturing, thin-film deposition, or polymer processing. Standards: Familiarity with ASTM, ISO, or industry-specific material specifications.
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for data analysis, CAD (SolidWorks). Processes: Experience with additive manufacturing, thin-film deposition, or polymer processing. Standards: Familiarity with ASTM, ISO, or industry-specific material
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research in integrated quantum and nonlinear photonics. The project aims to develop integrated quantum light sources based on thin-film lithium niobate platform. Main device components to be developed