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physics of our universe at the nanoscale: from atoms and fundamental particles from a century ago, to the quantum sensors and computers of today, quantum mechanics governs how these microscopic objects and
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networks and quantum circuits using techniques from (formal) computer science. You will work closely with this growing team, where most members, including the first PhD candidates who joined in September
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network of peers, senior researchers and industry contacts working at the front line of quantum computing, and a cross-disciplinary profile that remains rare and in high demand. You will be supervised by Dr
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contacts working at the front line of quantum computing, and a cross-disciplinary profile that remains rare and in high demand. You will be supervised by Dr Gabriele Liga (https://www.tue.nl/en/research
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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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quantum control and noise mitigation techniques to prepare, manipulate, and protect fragile quantum states, improving the performance of mechanical systems for sensing, metrology, and tests of fundamental
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quantum computing. We explore new ways to build sensors, such as continuous optical clocks, and collaborate with industry, startups and users to bring quantum technology to the market . This project is
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how fluid dynamics can be simulated on quantum computers by designing novel quantum algorithms, implementing software, and evaluating their performance on quantum computer simulators and potentially
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to demonstrate and evaluate the performance of the innovative low latency and high capacity optical switched AI computer network architecture empowered by the developed photonic integrated WDM switches and
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(QuBriC), we are seeking a PhD researcher who will work on quantum error correction for photonic, optical and microwave, quantum computing architectures within the group of Prof. Terhal at Delft University