Lecture

Hybrid superconducting / quantum dot circuits

Related lectures (80)
Quantum Optomechanics
Explores the fundamentals of quantum optomechanics, including radiation pressure, gravitational wave detectors, and quantum state manipulation.
Quantum and Nanocomputing: Atomic Quantum Dot based Quantum Cellular Automata
Explores the revolutionary approach to computation enabled by single silicon atoms acting as 'quantum dots'.
Coherent Control of Single Electron Spin
Covers the coherent control of a single electron spin and explores spin qubits in quantum dots, coherence times, and achieving quantum computing.
Proximitized Materials: From Spintronics to Majorana States
Explores the transition from spintronics to Majorana states in proximitized materials, focusing on magnetic proximity and topological superconductivity detection.
Quantum-Limited Amplifier and Qubit Readout
Explores quantum-limited amplifiers, vacuum Rabi splitting, and single-shot qubit readout.
Spin Qubits in Quantum Dots
Explores spin qubits in quantum dots, including coherence, exchange interactions, and spin-orbit coupling.
Magnetic Resonance: Spin Qubits and Their Applications
Covers magnetic resonance principles and their application to spin qubits in quantum science.
Rocket Engine Injector Optimization
Discusses optimizing the injector of a hybrid rocket engine for improved combustion efficiency.
Coupling Capacitive: Two Qubits Interaction
Covers the capacitive coupling of two qubits and its implications in quantum mechanics.
Posters
Explores the relationship between music and visual arts through the creation of posters.

Graph Chatbot

Chat with Graph Search

Ask any question about EPFL courses, lectures, exercises, research, news, etc. or try the example questions below.

DISCLAIMER: The Graph Chatbot is not programmed to provide explicit or categorical answers to your questions. Rather, it transforms your questions into API requests that are distributed across the various IT services officially administered by EPFL. Its purpose is solely to collect and recommend relevant references to content that you can explore to help you answer your questions.