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Foundations of Quantum Mechanics:
Lecture 15
4.2 Noise and decoherence (noise as a stochastic process, quantum noise spectrum)
Wigner density detection via parity measurement. 2.8 Generating arbitrary field states and measuring their Wigner density. Law-Eberly protocol. Santa Barbara experiment on Wigner density detection in circuit QED. 2.9 General theory of superconducting circuits (beginning).
T5. Quantum states of the field. Wigner density. Coherent states. Squeezed states. Squeezing operator. Quantum state tomography as a tool to measure the Wigner density.
Foundations of Quantum Mechanics:
Lecture 14
4. Decoherence;
4.1 Basic examples (Decoherence of a spin)
Foundations of Quantum Mechanics:
Lecture 13
3.3 Observing Trajectories (including Standard Quantum Limit of displacement detection);
3.4 Examples of measurements (position, momentum, energy, charge)
The cavity grid as a multi-qubit architecture in circuit cavity QED. Quantum error correction. Shor code for bit-flip and phase errors.
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These lectures deal with the modern topic of quantum optical phenomena in nanophysics. During the past decade, a variety of solid state nanosystems have been realized which can be described using…

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