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Related lectures (30)
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Electromagnetic Waves and Optics
Covers the fundamentals of electromagnetic waves and optics, including interference phenomena, diffraction, refraction, and reflection of light.
Nonlinear optics: 3rd order response, coherence in optics
Explores nonlinear optics, atomic polarisability, and coherence in optics, emphasizing the fixed phase relationship between waves.
Quantum Physics: Optics Problems
Explores optics problems in quantum physics, focusing on interference patterns and phase differences.
Interference Patterns: Fente and Peigne Convolution
Explores interference patterns of slits and convolution of systems, deriving D = 4A.
Interference between Reflected Rays
Explores the interference between two reflected rays and the calculation of the minimum thickness for interference to occur.
Electromagnetic Optics: Maxwell's Equations and Wave Propagation
Explores electromagnetic optics, Maxwell's equations, wave propagation, properties of light waves, and quantum aspects of light.
Michelson Interferometer: Path Difference and Interference Patterns
Explores the Michelson interferometer, demonstrating how to calculate mirror displacement from interference fringes observed on a screen.
Microsan Interferometer: Air Refraction Index Calculation
Explains how to calculate the air refraction index using interference fringes.
Radio Interferometry: The Universe At Radio Wavelengths
Explores radio interferometry, MeerKAT telescope, imaging vs. single measurement, and Fourier transform in radio astronomy.
Wave Optics: Wave Phenomena & Interference
Explores wave propagation, diffraction, interference, and Young's double-slit experiment.