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Lecture
Photon: Introduction and Properties
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Related lectures (29)
Photon: the light particle
MOOC: The Radio Sky I: Science and Observations
Delves into the properties and significance of the photon as a fundamental entity in the Universe.
Overview of Particle Physics and Rutherford Scattering
Covers the constituents of matter, fundamental forces, the Standard Model, natural units, and particle interaction experiments.
Principles of Quantum Mechanics
Covers the principles of quantum mechanics, energy quantification, photoelectric effect, and wave-particle dualism.
Kinetic Theory: Distribution Function Evolution
Explores the evolution of the distribution function describing particles in phase space.
Basic Concepts of Photons and X-rays
Covers the wave-particle duality of light, Compton scattering, photoelectric effect, electronvolt, and the electromagnetic spectrum.
Chemistry: Atomic Structure and Thermodynamics
Covers atomic structure, thermodynamics, material properties, and ideal gas law.
Chemical Equilibria and Reactivity
Explores gas properties, pressure, ideal and real gases, energy in reactions, and gas laws.
Atomic Structure: Fundamentals
Introduces the fundamentals of atomic structure, including the Bohr model, quantum mechanics, and the wave-particle duality of light.
Quantum Field Theory: Fourier Modes
Explores Fourier modes in Quantum Field Theory, emphasizing variables transforming well under translations and the normalization of states.
Atomic Theory and Spectroscopy
Explores the evolution of atomic theory, spectroscopy, and the nature of light.
Quantum Fluids: Cross Section & Lifetime
Covers the concepts of cross section and lifetime in quantum fluids, focusing on transition and differential probabilities.
Particle Physics: Fundamentals and Interactions
Covers the basics of particle physics, including elementary particles, forces, the Standard Model, and rare phenomena at the LHC.
Synchrotron Radiation
Covers the properties of synchrotron radiation, including its emission by relativistic particles and its effect on the beam through radiation damping.
Scalar, Vector or Tensor? Gravity
Discusses defining tensors, space-time dimensionality, and challenges in formulating a relativistic theory of gravity.
Spectroscopy with Light
Explores the physics of light, covering electromagnetic waves, particles, interference, and the wave-particle dualism.
Principles of Quantum Mechanics
Explores the principles of quantum mechanics, including discrete light properties and wave-particle dualism.
Elementary Particles: Decays and Properties
Explores elementary particle decays, stability, lifetimes, and properties measurement through kinematic reconstruction and experimental examples.
Equilibrium and Distribution
Explores the mesoscopic master equation, equilibrium, distribution, and Metropolis algorithm in Monte Carlo simulations.
Particle Detection: Stable Particles and Lifetime
Explores the detection of stable particles in particle physics experiments, covering observed and unobserved particles, their lifetimes, and the impact of Lorentz boost.
Quantum Physics: Wave-Particle Duality
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Explores wave-particle duality in quantum physics, covering interference, matter waves, and energy quantization.
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