Found 3 relevant results in 1.74s where lecturer="Jean-Claude Besse"

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402-0448-02L 2020S , 2021S , 2022S , 2023S , 2023W , 2024W , 2025W , 2026W 5 Credits DR , MSC D-MAVT , D-MATH , D-PHYS , D-ITET , D-MATL

Introduction to experimental systems for quantum information processing (QIP). Quantum bits. Coherent Control. Measurement. Decoherence. Microscopic and macroscopic quantum systems. Nuclear magnetic resonance (NMR). Photons. Ions and neutral atoms in electromagnetic traps. Charges and spins in quantum dots and color centers. Charge and flux in superconducting circuits. Novel hybrid systems.

2020S
2021S
2022S
2023S
2023W
2024W
2025W
402-0447-00L 2020W , 2021W , 2022W , 2023W , 2024S , 2025S , 2026S 6 Credits DR , MSC D-MATL , D-MAVT , D-PHYS , D-ITET

Superconducting Circuits provide a versatile experimental platform to explore the most intriguing quantum-physical phenomena and constitute one of the prime contenders to build quantum computers. Students will get a thorough introduction to the underlying physical concepts, the experimental setting, and the state-of-the-art of quantum computing in this emerging research field.

2020W
2021W
2022W
2023W
2024S
2025S
402-0447-10L 2025W , 2026W 6 Credits DR , MSC D-PHYS , D-ITET , D-MATL

Superconducting Circuits are a leading platform in the study of quantum information processing. Lead by the lecturers, students familiar with the basic experimental concepts of superconducting circuits will explore state-of-the-art research topics in the field.

2025W