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Lecture
Large Scale Facilities: Synchrotron and Free Electron Laser
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Introduction to X-rays and X-ray Sources: Part 3
Explores synchrotron radiation, X-ray sources, scientific achievements, and recent highlights in synchrotron science.
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Covers the role of photons in energy transport, energy measurement in astrophysics, photon energy distribution, and various radiation phenomena.
Undulators: Theoretical Principles and Spectral Characteristics
Explores the theoretical principles and spectral characteristics of undulators in synchrotrons and x-ray free-electron lasers.
Radiation Protection: Basics
Covers the interaction of radiations with matter, dose concepts, and radiation shielding.
Synchrotron: Quantum Physics and X-ray Technology
Explores the history of quantum physics, the challenges in constructing x-ray sources, and the use of synchrotron radiation.
Quantifying Synchrotron Radiation: Part 3
Explains single-electron emittance, factors determining emittance, and the diffraction limit in synchrotron radiation.
Bending Magnets and Magnet Lattice
Explores the design and function of bending magnets, quadrupoles, and sextupoles in synchrotrons and x-ray lasers.
X-ray Magnetic Imaging Techniques
Covers x-ray magnetic imaging techniques, including XMCD, XRMS, and x-ray optics, for studying magnetic materials and domains.
Basic concepts of photons and x-rays
Explores the interaction of x-rays with matter, matching photon energy, and ionizing radiation.
X-ray Techniques and Applications
Explores synchrotrons, x-ray techniques, ptychography, and nondestructive chip architecture study using PyXL.