Quantum-optical phenomena in nanophysics - 20: Linear classical dynamics of optomechanical systems episode artwork

EPISODE · Jul 1, 2010 · 1H 8M

Quantum-optical phenomena in nanophysics - 20: Linear classical dynamics of optomechanical systems

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

Foundations of Quantum Mechanics: Lecture 20 20.6.2013 (continued) Nelsons Stochastic Quantization (deriving the Schrödinger equation from a condition on a drift-diffusion process, nonlocality)   3.5 Optomechanical equations of motion (classical limit). 3.6 Linearized dynamics. Effective optomechanical damping rate and effective light-induced frequency shift (optical spring effect).  

Episode metadata supplied by the publisher feed · Published Jul 1, 2010

Embed this episode

Foundations of Quantum Mechanics: Lecture 20 20.6.2013 (continued) Nelsons Stochastic Quantization (deriving the Schrödinger equation from a condition on a drift-diffusion process, nonlocality) 3.5 Optomechanical equat...

Distinct summary based on available episode metadata or transcript content.

NOW PLAYING

Quantum-optical phenomena in nanophysics - 20: Linear classical dynamics of optomechanical systems

0:00 1:08:24

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 8 minutes long.

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

This episode was published on July 1, 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!