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Last updated:

September 23, 2023

Duration:

Unlimited Duration

FREE

This course includes:

Unlimited Duration

Badge on Completion

Certificate of completion

Unlimited Duration

Description

EE290F: Synchrotron Radiation for Materials Science Applications (Spring 2007, UC Berkeley). Instructor: Professor David Attwood.

This course covers topics: introduction to synchrotron radiation, X-ray optics, X-ray interaction with matter, wave propagation and refractive index, Brewster’s Angle, multilayer interface coatings, bending magnet radiation, coherent undulator radiation and its applications, X-ray diffraction for materials analysis, photoemission spectroscopy, zone plate microscopy and applications, and X-ray microtomography.

Course Curriculum

  • Lecture 01 – Introduction to Synchrotron Radiation Unlimited
  • Lecture 02 – X-ray Interaction with Matter: Absorption, Scattering, Refraction Unlimited
  • Lecture 03 – Probing Matter: Diffraction, Spectroscopy and Photoemission Unlimited
  • Lecture 04 – Radiation by an Accelerated Charge: Scattering by Free and Bound Electrons Unlimited
  • Lecture 05 – Multi-Electron Atom, Atomic Scattering Factors: Wave Propagation and Refractive Index Unlimited
  • Lecture 06 – Refraction and Reflection, Total Internal Reflection, Brewster’s Angle, Kramers-Kronig Unlimited
  • Lecture 07 – Multilayer Interference Coatings, Scattering, Diffraction, Reflectivity and Applications Unlimited
  • Lecture 08 – Introduction to Synchrotron Radiation, Bending Magnet Radiation Unlimited
  • Lecture 09 – Bending Magnet Critical Photon Energy, Undulator Central Radiation Cone Unlimited
  • Lecture 10 – Undulator Equation and Radiated Power Unlimited
  • Lecture 11 – Spectral Brightness of Undulator Radiation, Harmonics, Wiggler Radiation Unlimited
  • Lecture 12 – Spatial and Temporal Coherence; Coherent Undulator Radiation Unlimited
  • Lecture 13 – Applications of Coherent Undulator Radiation Unlimited
  • Lecture 14 – Visit the Advanced Light Source, Berkeley (ALS) Unlimited
  • Lecture 15 – Advanced Spectroscopy for Atomic and Molecular Physics Unlimited
  • Lecture 16 – X-Ray Absorption Spectroscopy: XAFS, NEXAFS, XANES, EXAFS Unlimited
  • Lecture 17 – X-Ray Diffraction for Materials Analysis Unlimited
  • Lecture 18 – Photoemission and Photoemission Spectroscopy Unlimited
  • Lecture 19 – Angle Resolved Photoemission and Non-ARPES Unlimited
  • Lecture 20 – PhotoEmission Electron Microscopy (PEEM) Unlimited
  • Lecture 21 – X-rays and Magnetism Unlimited
  • Lecture 22 – XMCD; Out-of-Plane Bending Magnetic Radiation Unlimited
  • Lecture 23 – Zone Plate Microscopy and Applications Unlimited
  • Lecture 24 – Nanoscale Magnetic Imaging Unlimited
  • Lecture 25 – Biological X-ray Microscopy Unlimited
  • Lecture 26 – X-ray Microtomography Unlimited
  • Lecture 27 – Coherent Soft X-ray Scattering for Studying Nanoscale Materials Unlimited
  • Lecture 28 – Student Presentations Unlimited
  • Lecture 29 – Student Presentations (cont.) Unlimited
  • Lecture 30 – Student Presentations (cont.) Unlimited

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