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doctoral network on quantum error correction, as a PhD candidate at TU/e, designing next-generation codes and decoders for real quantum hardware. Information Quantum computers have grown remarkably fast
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computing? Then join QuBriC, a pan-European doctoral network on quantum error correction, as a PhD candidate at TU/e, designing next-generation codes and decoders for real quantum hardware. Information
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PhD position on quantum error correction for photonics. Job description As part of a new European Marie Curie Doctoral Training Network focused on quantum error correction and fault tolerance
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Ever wondered what keeps your data flawless, and secret, as it travels through an optical fibre, even against the quantum computers on the horizon? The answer is error-correcting codes: clever maths
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losses, but their performance is increasingly difficult to measure with sufficient bandwidth, accuracy and traceability. When converter efficiencies exceed 99%, even very small measurement errors can
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tools for improving the quality of entanglement between network nodes. Potential directions are improving techniques for entanglement distillation, potentially through a connection with error correction
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be developed, capable of operating in reactive, online settings where the data distribution may shift over time. Key challenges include detecting prediction failures, designing self-correcting update
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retrieve shapes, overlay errors, and other geometrical parameters of the target using methods ranging from local and global optimizers to priors and neural networks developed by partners in the project. Job
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postdoctoral researcher who will focus on Belgium and the Great Lakes Region of Central Africa. By comparing these case studies and triangulating the diverse methods, the project will enable a better
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your answer in something you have actually experienced or observed. There is no correct answer. We are interested in how you make sense of a specific experience and how you connect to our project’s topic