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Electron Microscopy (TEM) and HAADF-STEM images. Microscopy data are often degraded by noise and scan distortions, and clean ground truth data are rarely available. This project aims to go beyond standard
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in electron dose and scan stability, microscopy data is often affected by significant noise and scan distortions. High-quality ground truth data is usually unavailable or costly to collect. To overcome
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data is often affected by significant noise and scan distortions. High-quality ground truth data is usually unavailable or costly to collect. To overcome this, we focus on self-supervised denoising
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Centre for Microbial Research (UCMR, https://www.umu.se/ucmr/om-ucmr /) offering an vibrating research environment for meetings and collaborations. The research group is directly associated to the Umeå
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, https://www.umu.se/ucmr/om-ucmr /) offering an vibrating research environment for meetings and collaborations. The research group is directly associated to the Umeå Centre for Electron Microscopy (UCEM
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importance and practical relevance of this research including the effects of noise and decoherence, as well as the role of optimum quantum measurement strategies. This PhD project will investigate the sensing
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electronics for space-borne Earth climate observations. With this goal in mind, the PhD project will explore ultra-low-noise detectors and advanced terahertz receiver architectures. Major responsibilities Your