QED vacuum fluctuations and induced electric dipole moment of the neutron

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Abstract

Quantum fluctuations in the QED vacuum generate nonlinear effects, such as peculiar induced electromagnetic fields. In particular, we show here that an electrically neutral particle, possessing a magnetic dipole moment, develops an induced electric dipole-type moment with unusual angular dependence, when immersed in a quasistatic, constant external electric field. The calculation of this effect is done in the framework of the Euler-Heisenberg effective QED Lagrangian, corresponding to the weak field asymptotic expansion of the effective action to one-loop order. It is argued that the neutron might be a good candidate to probe this signal of nonlinearity in QED. © 2009 The American Physical Society.

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Dominguez, C. A., Falomir, H., Ipinza, M., Kohler, S., Loewe, M., & Rojas, J. C. (2009). QED vacuum fluctuations and induced electric dipole moment of the neutron. Physical Review D - Particles, Fields, Gravitation and Cosmology, 80(3). https://doi.org/10.1103/PhysRevD.80.033008

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