Skip to main content
Graph
Search
fr
|
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Practice
Publications
Startups
Units
Show all results for
Home
Lecture
Electron Oscillator Model: Lorentz Model
Graph Chatbot
Related lectures (31)
Previous
Page 2 of 4
Next
Laser Systems and Atomic Transitions
Covers laser operation, systems, atomic transitions, gain, and absorption coefficient in the Lorentz model.
Laser fundamentals and applications
Explores the historical perspective, mechanisms, types, and applications of lasers, including Nobel Prizes and market segments.
Optical Methods in Chemistry
Introduces optical methods in chemistry, covering ray optics, lasers, spectroscopy, and X-ray physics, emphasizing light-matter interactions and Nobel Prize-winning advancements.
Laser Fundamentals: Gain and Absorption Mechanisms
Discusses the principles of laser operation, focusing on gain and absorption mechanisms essential for understanding light-matter interactions.
Electron oscillator model: absorption and refractive index
Explains how oscillating electron dipoles influence wave propagation and discusses absorption and refractive index.
Fiber laser and modelocking
Covers fiber lasers, including types, fabrication, absorption, resonators, and modelocking, with examples and comparisons.
Laser Fundamentals: Operation and Applications
Provides an overview of laser fundamentals, including operation principles and various applications in engineering.
Laser Systems: Operation and Applications
Covers the basics of laser operation, different laser systems, noise characteristics, and practical demonstrations in the laboratory.
Laser as Light Source
Explores laser principles, types, and hazards, focusing on eye and skin safety measures.
Semi-conductor laser and beam quality
Explores semi-conductor lasers, beam quality, direct vs. indirect bandgap, and M2 parameter significance.