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Advanced Optics: Grating Fundamentals
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Electron Diffraction: Basics & Applications
Explores electron diffraction basics, including Bragg's law, reciprocal lattice, and applications like crystal phase discrimination.
Nanophotonic Engineering: Energy Devices
Explores nanophotonic engineering for energy devices, covering heat transfer, energy conversion, transport regimes, and surface polaritons.
NMR and SPR: Spectroscopy and Resonance
Explores NMR spectroscopy energy splitting and resonance, along with SPR principles and applications in biosensing.
Reciprocal Lattice and Diffraction
Explores reciprocal lattice in 2D systems, diffraction from lattice and atomic structures, emphasizing scattering and constructive interference.
Coherent Control of Plasma Resonances
Explores wavefunction engineering, coherence control, speckle phenomena, microscopy, dynamics, and plasma resonances.
Multiple beam scattering in electron diffraction
Explores multiple beam scattering in electron diffraction, focusing on zone axis diffraction patterns and theoretical approaches.
Exploring 2D Materials at High Resolution
Explores advanced electron microscopy techniques for 2D materials, covering high-resolution imaging, reducing damage, diffraction, and ptychography.
Inelastic Scattering in Transmission Electron Microscopy
Introduces inelastic scattering in transmission electron microscopy, focusing on electron energy-loss spectroscopy principles and applications.
Surface Plasmon Sensors: Sensitivity and Selectivity
Explores the sensitivity of surface plasmon sensors to environmental changes when the analyte binds, along with affinity sensing and fiber-based sensor miniaturization.
Crystallography: Describing Periodic Structures
Covers crystallography, lattice structures, vectors, and diffraction patterns.