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Principles of Optics: Electromagnetic Theory of Propagation, Interference ...
Max Born,Emil Wolf
No preview available - 1999
QUANTUM THEORY TREATMENT OF POLARIZATION
SCATTERING OF SPINi PARTICLES
5 other sections not shown
0lab amplitudes analogous to eqn analysing powers antineutrino arbitrary axis beam is given beam of light c.m. system circularly polarized light Clebsch-Gordan coefficients completely polarized beam components consider convenient corresponding cos2 denotes density matrix deuteron deuteron beam diagonal E-rays eigenstates eigenvalues elastic scattering electron expectation values final particles given by eqn helicity incident beam initial system interaction Jones calculus Jones vector KQkq linear linearly polarized Lorentz transformation magnetic field matrix elements measured Mueller calculus Mueller coefficients Mueller matrix Mueller method obtain optical devices parity conservation photons Poincare polarization transfer coefficients quantities quarter-wave plate radiation reciprocity reference axes representation represented respectively resultant beam right-handed Rotational invariance scattered beam scattering parameter Section spin wave function spin-j particles spinless target standard scattering matrix Stokes parameters Stokes vector stopped calcite crystal sub-levels theory tion tKQ(s transverse unit intensity unpolarized wave function y-axis z-axis Zeeman effect