Lecture

Damped Harmonic Oscillator

In course
DEMO: nostrud nostrud
Quis consectetur qui minim dolor. Commodo aliqua occaecat quis veniam eiusmod incididunt irure exercitation magna tempor voluptate sit. Proident consequat veniam incididunt dolore id sint. Voluptate cillum magna ullamco irure occaecat. Labore do incididunt dolor nostrud dolore deserunt. Ad ad sunt nulla commodo aliquip laborum et laboris do pariatur.
Login to see this section
Description

This lecture covers the damped harmonic oscillator in quantum optics, discussing alternative descriptions, coherent states, photon numbers, phase space, and extensions like finite temperature and phase damping. The instructor explains the decay process, field amplitudes, and the behavior of the system at different temperatures.

This video is available exclusively on Mediaspace for a restricted audience. Please log in to MediaSpace to access it if you have the necessary permissions.

Watch on Mediaspace
Instructor
elit excepteur consectetur nostrud
Dolor quis excepteur elit non nulla irure sit. Ipsum aliquip aliqua mollit occaecat. Et consectetur id aliquip incididunt do voluptate adipisicing laborum fugiat aliqua ex ullamco dolor. Fugiat laborum irure enim dolor nostrud voluptate consectetur commodo ipsum incididunt. Eu nisi excepteur pariatur magna enim esse qui. Enim cupidatat laboris ea duis pariatur ad officia incididunt pariatur tempor ad elit cupidatat amet.
Login to see this section
About this result
This page is automatically generated and may contain information that is not correct, complete, up-to-date, or relevant to your search query. The same applies to every other page on this website. Please make sure to verify the information with EPFL's official sources.
Related lectures (36)
Damped harmonic oscillator: Introduction and Field Amplitude
Covers the damped harmonic oscillator, introducing the field amplitude and coherent states.
Damped Harmonic Oscillator
Covers the damped harmonic oscillator in quantum optics, including field amplitude, coherent states, photon numbers, and phase space.
Quantum Optics I: Stern-Gerlach Experiment
Explores the Stern-Gerlach experiment, strong measurements, cavity quantum electrodynamics, and quantum optomechanics.
Optical Bloch Equations
Covers the derivation and solutions of Optical Bloch Equations for a two-level quantum system.
Harmonic Oscillators: Definitions and Dynamics
Covers the definitions and dynamics of harmonic oscillators, including ladder operators and coherent states.
Show more

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.