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FIELD OF A POINT CHARGE AND EMISSION OF LIGHT
REACTION OF THE FIELD LINE BREADTH
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4-vector absorbed according amplitudes angle annihilation atom Born's approximation Bremsstrahlung calculated charge classical theory collisions component Compton scattering consider correspondence principle Coulomb curves denotes density Dirac direction of polarization electromagnetic field emitted energy and momentum energy loss external field factor field strengths formula free electron frequency given gives Hamiltonian high energies initial insert integral intensity distribution interaction intermediate kinetic energy Klein-Nishina formula light quantum light wave longitudinal waves Lorentz Lorentz transformation matrix elements measurement negative electron negative energy non-relativistic nucleus number of light obtain order of magnitude P. A. M. Dirac pair pair production particle photoelectric Phys plane wave positive electron potential primary energy quadripole quantization quantum electrodynamics quantum mechanics quantum theory radiation oscillators region relativistic represents right-hand side satisfy self-energy subsection summation test body tion transition probability transverse waves uncertainty relation vanishes vector velocity wave equation wave function wave-length y-rays zero Zs.f