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PhD Position in High-Performance Float Zone Crystalline Silicon for Application in Einstein Telescope
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Growth of high-purity silicon crystals by the Czochralski method using magnetic fields – for Einstein telescope mirror substrates
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Minimization of optical absorption at 1550 nm in polished silicon surfaces
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Entanglement- and machine-learning-enhanced sensor for subtracting backscatter disturbances
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PhD Position in High-Performance Float Zone Crystalline Silicon for Application in Einstein Telescope
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Machine-learning-based noise mitigation pipelines
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PhD position investigating suspension platform interferometers for ET
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Postdoctoral Researcher in Real-Time AI and FPGA-Based Noise Mitigation for the Einstein Telescope
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PhD position in AI-based Newtonian-Noise mitigation for the Einstein Telescope
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Developing ET Noise Budget: Reliability, Accessibility and Completeness