Search results for "Classical electron radius"

showing 2 items of 2 documents

Modell einer Coulombschen Ladung in der nichtlinearen Feldtheorie

1960

>The nonlinear field theory developed by K. Bechert has solutions which correspond to a charged particle whose charge is represented by a charge density which is zero in the particle center, increases to a maximum against the particle edges, and then again decreases. The linear expansion of the particles was measured by the characteristic length L, which accurately represents the classical particle radius; for an electron L is equal to the classical electron radius. The physical magnitudes integrated over a random spatial area are all infinite. In the theory a dimensionless number of the order-of-magnitude of 10/ sup 4//sup 2/ occurs. The particle was held together by gravitational forces w…

GravitationPhysicsClassical electron radiusPoint particleQuantum mechanicsGeneral Physics and AstronomyClassical field theoryElementary particleRadiusElectronCharged particleAnnalen der Physik
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On the determination of the proton RMS-radius from electron scattering data

1975

It is shown that the proton rms radius should be determined from fitting a polynomial of second order to the low-q 2 form factors. The commonly used polynomial of first order yields radius values which are too small. The proton rms radius has been redetermined from an analysis of the electron scattering data measured at three laboratories. The best fit value is 〈r E 2 〉1/2=0.87±0.02 fm.

PhysicsNuclear and High Energy PhysicsProtonbusiness.industryScatteringForm factor (quantum field theory)RadiusClassical electron radiusOpticsCharge radiusAstrophysics::Earth and Planetary AstrophysicsAtomic physicsbusinessNucleonElectron scatteringZeitschrift f�r Physik A: Atoms and Nuclei
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