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X-ray Techniques and Applications
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Related lectures (31)
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Optical Waves: Reflection, Refraction, and Transmission
Explores optical wave behavior, including reflection, refraction, transmission, and intensity effects at interfaces.
Electromagnetic Waves and Optics
Covers the fundamentals of electromagnetic waves and optics, including interference phenomena, diffraction, refraction, and reflection of light.
Diffraction Basics IV: Bragg's Law and Rotations
Explains Bragg's law, rotations in space, and the Ewald sphere for diffraction.
Beamlines: Primary Optics
Explores techniques for harmonic suppression in synchrotrons and x-ray lasers.
Beamlines: Secondary Optics Part 2
Explores the design and operation of Fresnel zone plates for focusing x-rays in synchrotrons and x-ray free-electron lasers.
Thin Films: Growth and Interfaces
Explores dislocation motion, thin film growth models, and interface nature in modern technology.
Optical Interfaces: Reflection and Refraction
Explores reflection and refraction at optical interfaces, including Fresnel equations and practical applications.
Wigglers and Undulators: Tuning Photon Energy and Polarization
Covers tuning photon energy, selecting desired energy, varying polarization, APPLE undulators, and rapid switching.
Monochromators: General Features
Introduces monochromators and their importance in selecting specific frequencies for experiments.
Polarized Light: Reflection and Lenses
Explores circular polarized waves, reflection, lenses, and human vision optics.