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The Research Fellow will work on a project to conduct the research on development of high-energy femtosecond fibre lasers for multiphoton imaging applications. The project is to introduce innovative
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on-chip planar coherent light sources, including the fabrication and characterization of transition metal dichalcogenides (TMDCs) and associated lasers. He/she will get involved with collaborated research
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Experiences: Ph.D. in chemistry, materials sciences, polymer engineering, and/or related fields Experiences in biomass-derived materials Experiences in digital fabrication (3D printing, laser cutting, fluid
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the following: The development and design of a quantum processor using neutral atoms array. The designing of the vacuum system, characterisation of the laser system, implementation of the optical systems, and
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, flame structure, and pollutant emissions. 2. Develop and implement innovative measurement techniques and instrumentation to capture detailed information of ammonia flames, such as laser-based diagnostics
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of optical pulses with a well-defined time width and frequency, and requires experience with laser spectroscopy and single photon detection. Additionally, knowledge of quantum state estimation will be
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, flame structure, and pollutant emissions. 2. Develop and implement innovative measurement techniques and instrumentation to capture detailed information of ammonia flames, such as laser-based diagnostics
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solutions and advancements in different research areas (e.g. Microsystems Technology, Hardware Assurance, Signal Processing, Advance Materials, Advance Laser Technology and Emerging Technologies). We take
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the development and design of a quantum processor using neutral atoms array and will also participate to the design of the vacuum system, characterisation of the laser system, implementation of the optical systems
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to the development and design of a quantum processor using neutral atoms array. In particular, the candidate will participate to the design of the vacuum system, characterisation of the laser system, implementation of