
Quantum-optical phenomena in nanophysics - 27: Hybrid quantum systems
Jul 22, 2010 - 01:08:44
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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, dam...
Quantum-optical phenomena in nanophysics - 16: General theory of superconducting circuits is an episode from Quantum-optical phenomena in nanophysics 2010 (SD 640) by Prof. Dr. Florian Marquardt. Foundations of Quantum Mechanics: Lecture 16...
This episode belongs to Quantum-optical phenomena in nanophysics 2010 (SD 640).
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Published Jun 21, 2010, 01:22:39 long, audio available.
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.
You can listen to Quantum-optical phenomena in nanophysics - 16: General theory of superconducting circuits online on Radio and Podcast. Open the player on this page to stream the available audio.
Quantum-optical phenomena in nanophysics - 16: General theory of superconducting circuits is an episode from Quantum-optical phenomena in nanophysics 2010 (SD 640) by Prof. Dr. Florian Marquardt.
This episode is 01:22:39 long.
This episode was published on Jun 21, 2010.
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Quantum-optical phenomena in nanophysics - 16: General theory of superconducting circuits is from Quantum-optical phenomena in nanophysics 2010 (SD 640) by Prof. Dr. Florian Marquardt.
Published Jun 21, 2010 and 01:22:39 long