Propagation Properties of Bound Electromagnetic Field: Classical and Quantum Viewpoints
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Date
2020
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Springer
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Abstract
The present work is motivated by recent experiments aimed to measure the propagation velocity of bound electromagnetic (EM) field (Missevitch, et al. in EPL 93:64004, 2011; de Sangro et al. in Eur Phys J C 75:137, 2015) that reveal no retardation in the absence of EM radiation. We show how these findings can be incorporated into the mathematical structure of special relativity theory that allows us to reconsider some selected problems of classical and quantum electrodynamics. In particular, we come to the conclusion that the total four-momentum for a classical system "particles plus fields" ought to be a present state function of moving charges if EM radiation is negligible. In quantum domain, we analyze novel definition of the momentum operator recently suggested in the study of quantum phase effects (Kholmetskii et al. in Sci. Rep. 8:11937, 2018). It implies that bound EM field energy and momentum are to be present state functions, too. Being in agreement with reported experiments, these conclusions suggest the necessity to carry out more precise experimental verifications for additional and independent determination of propagation properties of bound EM fields. A scheme of a possible experiment on this subject is also proposed.
Description
Yarman, Tolga/0000-0003-3209-2264; Kholmetskii, Alexander/0000-0002-5182-315X
Keywords
Classical electrodynamics, Bound electromagnetic field, Special relativity, Quantum electrodynamics, Quantum phases
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0
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Q3
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Q2
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Volume
50
Issue
11
Start Page
1686
End Page
1722