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: Experimental low-temperature physics focussed primarily on growth of crystals of new 2D materials via chemical vapour transport or flux methods. Handling of hazardous chemicals and running chemical processes
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converted into electrical signals, providing a rapid, continuous, and sensitive method for detecting radioactive gases. The chemical challenge lies in synthesizing a monolith (a single-piece material) with
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) Theoretical Modeling: Develop and refine models for entanglement harvesting using continuous-variable quantum information theory and Gaussian quantum states steering. (2) Experimental Simulation: Simulate
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of 2D materials and comprise exciting new building blocks for exotic new quantum engineering. We seek to control their properties and discover new phases of matter beyond the as-grown crystal properties
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: Develop and refine models for entanglement harvesting using continuous-variable quantum information theory and Gaussian quantum states steering. (2) Experimental Simulation: Simulate the detection of vacuum