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Field
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for you! Your role and goals Planning and executing laboratory experiments on 2D material nanocomposite synthesis Thin film electrochemical and FET device fabrication and characterization Writing
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-transfer printing. You will be responsible for: Developing novel fabrication methods for solid laser waveguides (e-beam lithography / dry-etch optimization / thin-film development) Testing and characterizing
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/ dry-etch optimization / thin-film development) Testing and characterizing on-chip solid-state lasers Modelling and design of PIC narrow linewidth CW lasers for trapped ion/cold atom/color center quantum
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) to work on an EPSRC-funded project developing vapour-deposited perovskite thin films for high-efficiency multijunction solar cells. The successful candidate will engineer novel precursor materials and
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, including: Polymer preform fabrication and fiber drawing High-shear matrix compounding Thin-film extrusion and structuring Correlate rheological behavior directly with processability (drawability
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systems will be highly appreciated. The candidate should also have knowledge of microfluidics and/or organ-on-chip technologies, as well as hands-on experience with at least one thin-film deposition
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. Physicochemical characterization of the modified surfaces using the techniques available in the laboratory, including electron microscopy, surface spectroscopies, and thin-film analysis methods. Analysis
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team that includes condensed matter theorists, experts in neutron/X-ray scattering, and experts in thin film and single crystal materials growth and characterization. You will perform cutting-edge
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devices exploiting the nonlinear kinetic inductance of thin superconducting films, including microwave resonators for frequency-domain multiplexed readout of single photon detectors (kinetic inductance
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lithography, atomic layer deposition; thin film metals deposition, and scanning electron microscopy are considered highly desirable. Responsibilities Responsibilities include development of semiconductor device