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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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passionate about building an entanglement-based quantum internet? In this PhD project, you will design an entanglement source, a routing architecture, protocols, and set up a testbed that distributes and
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have: A PhD in Physics or a closely related discipline by the start of the appointment. Expertise in one or more of the following areas: quantum optics, quantum technologies, quantum information, quantum
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We are looking for a PhD student to help us develop practical cryptography for the post-quantum era. This (fully funded) PhD studentship focuses on provable security. Information You will develop
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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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excitations on fractals, or using qudits. We are embedded in the QDNL KAT-1 Neutral Atom Quantum Computing team, strongly collaborating with the Quantum Computing team at TU/e. This is what you will do You will
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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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. Realising this potential, however, requires a theoretical framework that connects the behaviour of realistic quantum systems with the fundamental questions they can address. As a PhD candidate at TU Delft
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for Quantum Simulation for Molecular and Material Design. The aim is to leverage our strong expertise in Quantum Computing to contribute to Quantum Simulations in relation to Molecular and Material
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optical systems for ultracold-strontium experiments in quantum sensing, many-body physics, and quantum computing. This gives you a demanding real-world test environment for new hardware, while OpticsFoundry