Quantum Electromagnetic Nonlinearity Affecting Charges and Dipole Moments

Due to the nonlinearity of QED, a static charge becomes a magnetic dipole if placed in a magnetic field, and a magnetic monopole on the background is a combination of constant electric and magnetic fields. Already without external field, the cubic Maxwell equation for the field of a point charge has...

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Veröffentlicht in:Russian physics journal 2017-03, Vol.59 (11), p.1775-1787
Hauptverfasser: Adorno, T. C., Gitman, D. M., Shabad, A. E., Shishmarev, A. A.
Format: Artikel
Sprache:eng
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Zusammenfassung:Due to the nonlinearity of QED, a static charge becomes a magnetic dipole if placed in a magnetic field, and a magnetic monopole on the background is a combination of constant electric and magnetic fields. Already without external field, the cubic Maxwell equation for the field of a point charge has a soliton solution with a finite field energy and finite potential, the energy-momentum vector of a moving soliton being the same as that of a point massive particle. Equations are given for self-coupling dipole moments. Any theoretically found value for a multipole moment of a baryon or a meson should be subjected to nonlinear renormalization.
ISSN:1064-8887
1573-9228
DOI:10.1007/s11182-017-0976-z