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Lecture
Reciprocal Lattice: Diffraction Basics III
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Related lectures (32)
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Deviation from Bragg scattering
Covers electron diffraction theory, Bragg's law, reciprocal lattice, Ewald sphere, and weak-beam dark-field imaging.
Dynamical scattering: double diffraction
Delves into double diffraction in dynamical scattering, showcasing diffraction spots for forbidden planes and the Ewald sphere/reciprocal lattice.
Microscopy Resolution: Understanding Rayleigh Criteria
Explains microscopy resolution using Abbe's theory and Rayleigh criterion.
Kinematical Scattering: Bloch Wave Theory and Applications
Discusses kinematical scattering from crystal lattices and introduces Bloch wave theory for two-beam diffraction applications.
Bragg's law: Transmission Microscopy
Explains Bragg's law in Transmission Electron Microscopy, focusing on the relationship between wavelength, crystal lattice spacing, and diffraction angle.
Optical Principles
Covers fundamental principles of ray and wave optics, including reflection, interference, diffraction, and spectroscopy.
Advanced Optics: Bragg Gratings
Covers the principles of Bragg gratings on a surface and the existence of different diffraction orders.
Microscopy: Resolution
Covers properties of the Fourier Transform and diffraction patterns in microscopy.
Crystal Structure: Diffraction and Bragg's Law
Explores diffraction principles for observing atomic arrangements and determining crystal structures in solids.
Diffraction and Interference: Waves Phenomena
Explores diffraction, interference, X-ray diffraction, and light diffusion efficiency.