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Field
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combine ultrafast pump–push–probe experiments with sub-10 fs resolution, finite-element simulations, and quantum models extending the Tavis–Cummings Hamiltonian. The aim is to demonstrate coherent control
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Northwestern Switzerland with state-of-the-art experiments in quantum optics at University of Basel Close collaboration with internationally recognized experts in ultrafast optics, micromachining and quantum
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Building a quantum computer that can solve real-world problems will require the integration of many highly coherent qubits. Hole-spin qubits in planar germanium quantum wells are among the most
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properties. Your position In this project, we exploit circuit quantum electrodynamics (cQED) techniques based on high-impedance superconducting resonators in the GHz regime to probe electron-electron
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home to three research clusters: Quantum Gases & Quantum Information (QGQI), Quantum Materials (QMat), and Soft Matter (SM). You will be based in the Soft Matter cluster, working in Prof. Shahidzadeh's
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Organizational Unit: Quantum and Nanotechnologies Classification: RO Tenure: Term Duration: 2 years Language Requirements: English Work arrangements: Due to the nature of the work and operational requirements
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students, the Faculty of Applied Sciences is an inspiring scientific ecosystem. Focusing on key enabling technologies, such as quantum- and nanotechnology, photonics, biotechnology, synthetic biology and
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technologies, such as quantum- and nanotechnology, photonics, biotechnology, synthetic biology and materials for energy storage and conversion, our faculty aims to provide solutions to important problems
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Quantum computers are on the horizon that could break the encryption protecting our banks, hospitals, and national infrastructure. This fully funded, part-time PhD studentship offers the chance to
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conditions, and experimental configurations. Classical and emerging cryptographic implementations, secure embedded platforms, hardware accelerators, and post-quantum cryptographic implementations may be used