Course outline
From Physiki
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Line 1: | Line 1: | ||
− | == I. | + | == I. Maxwell equations and boundary conditions == |
Displacement current & the Ampere-Maxwell equation | Displacement current & the Ampere-Maxwell equation | ||
Line 21: | Line 21: | ||
Evanescent waves - Analogy to tunneling, NSOM | Evanescent waves - Analogy to tunneling, NSOM | ||
− | Dispersion - Group & phase velocity, | + | Dispersion - Group & phase velocity, causality |
− | == III. | + | == III. Relativistic E&M == |
− | |||
Lorentz transforms | Lorentz transforms | ||
Line 37: | Line 36: | ||
− | == IV. | + | == IV. Waveguides & transmission == |
+ | |||
+ | Modes | ||
+ | |||
+ | Cavities & resonances, Q-factor | ||
Line 49: | Line 52: | ||
− | == VI. | + | == VI. QM & E&M == |
− | Lasers | + | Lasers - Modes, cavities, phase locking, local relevance |
− | + | Spectra & spectrometry - Absorption & emission, Raman, cosmological redshift | |
QED | QED |
Latest revision as of 17:42, 5 September 2012
Contents |
I. Maxwell equations and boundary conditions
Displacement current & the Ampere-Maxwell equation
Boundary conditions in vacuum and matter
Gauge freedom
Energy & momentum in fields - Solar sails
II. Electromagnetic waves
In vacuum (planar and spherical)
In matter - Transparency & opacity (Classical & QM)
Reflection & refraction
Evanescent waves - Analogy to tunneling, NSOM
Dispersion - Group & phase velocity, causality
III. Relativistic E&M
Lorentz transforms
4-vectors, tensors
The emergence of magnetism
All boxed up
IV. Waveguides & transmission
Modes
Cavities & resonances, Q-factor
V. Radiation
Retarded potentials
Dipole & monopole sources
Scattering
VI. QM & E&M
Lasers - Modes, cavities, phase locking, local relevance
Spectra & spectrometry - Absorption & emission, Raman, cosmological redshift
QED