Quantum-optical phenomena in nanophysics - 16: General theory of superconducting circuits episode artwork

EPISODE · Jun 21, 2010 · 1H 22M

Quantum-optical phenomena in nanophysics - 16: General theory of superconducting circuits

from Quantum-optical phenomena in nanophysics · host Prof. Dr. Florian Marquardt

Foundations of Quantum Mechanics: Lecture 16 10.6.2013 (continued) noise spectrum; 4.3 Quantum dynamics of open systems (Kraus operators, Lindblad master equation, examples: two-level system relaxation and dephasing, damped harmonic oscillator)   Continued with general theory of superconducting circuits. Flux representation. Node variables. Lagrangian. Hamiltonian. Phase representation vs. charge representation. Phase qubit. Flux control of a Cooper-pair box via the Aharonov-Bohm effect.  

Episode metadata supplied by the publisher feed · Published Jun 21, 2010

Embed this episode

Foundations of Quantum Mechanics: Lecture 16 10.6.2013 (continued) noise spectrum; 4.3 Quantum dynamics of open systems (Kraus operators, Lindblad master equation, examples: two-level system relaxation and dephasing, damped harm...

Distinct summary based on available episode metadata or transcript content.

NOW PLAYING

Quantum-optical phenomena in nanophysics - 16: General theory of superconducting circuits

0:00 1:22:39

No transcript for this episode yet

We transcribe on demand. Request one and we'll notify you when it's ready — usually under 10 minutes.

No similar episodes found.

No similar podcasts found.

Frequently Asked Questions

How long is this episode of Quantum-optical phenomena in nanophysics?

This episode is 1 hour and 22 minutes long.

When was this Quantum-optical phenomena in nanophysics episode published?

This episode was published on June 21, 2010.

Can I download this Quantum-optical phenomena in nanophysics episode?

Yes. Use the download control on the episode player to save the publisher-provided media file.
URL copied to clipboard!