
Lecture Description
- The CosmoLearning Team
Course Index
- Class Overview I
- Class Overview II
- Laser Wavelength Scaling
- Interaction Physics
- Radiation by an Accelerated Charge
- Scattering by Free and Bound Electron
- X-ray Refractive Index
- Brewster's angle and Multilayer mirrors
- Multilayer Applications
- Synchrotron Radiation
- Bending Magnet Radiation
- Undulator Radiation
- Undulator Brightness and Harmonics
- Plasma Physics
- Plasma Physics (cont.)
- Plasma Waves
- Blackbody Radiation
- High Harmonic Generation
- Lasers
- EUV and Soft x-ray Lasers
- Coherence, Spatial and Temporal
- Coherent Undulator Radiation
- Van Cittert-Zernike Theorem
- Zone Plate Formulas
- Zone Plate Imaging and Microscopy
- Spatial Resolution and Depth of Field
- Applications of Zone Plate Microscopy
- EUV lithography
Course Description
In this course, Professor David Attwood gives 28 video lectures on Soft X-rays and Extreme Ultraviolet Radiation. Some of the topics covered in these video lectures are: Basic Absorption and Emission Processes; Scattering, Diffraction, and Refraction of Electromagnetic Radiation; Maxwell's Equations and the Wave Equation; Scattering by a Free Electron, Bound Electrons and Multi-Electron Atom; Brewster's Angle; Transition from Undulator to Wiggler Radiation; Hot Dense Plasmas and Synchrotron Radiation, Wiggler Power and Flux; Density Gradients, UV and EUV Probing; High Harmonic Generation with Femtosecond Laser Pulses; Recombination Lasing with Hydrogen-Like Carbon Ions; Collisionally Pumped Neon-Like Lasers; Coherence at Short Wavelengths; Spatial and Spectral Filtering of Undulator Radiation; X-Ray Microscopy with Diffractive Optics; Diffraction of Radiation by Pinhole Apertures and Zone Plates; High Resolution Soft X-Ray Microscopy; X-Ray Proximity Lithography, and many more.