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   <subfield code="a">Emission accompanying superluminal motion of light</subfield>
   <subfield code="h">[Elektronische Daten]</subfield>
   <subfield code="c">[B. Bolotovskii, B. Bykov]</subfield>
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   <subfield code="a">Conclusion: We hope that we have succeeded in demonstrating the great scientific interest that attaches to superluminal motions of charges and to investigation of the radiation accompanying these motions. An extensive literature on superluminal motion is on hand even now. It deals, however, mainly with radiation in rectilinear motion, i.e., phenomena connected with the Vavilov-Cherenkov effect, the anomalous Doppler effect, ect. In the present note, on the other hand, principal attention is paid to the influence of the breakup of radiation of a single real source on the emission of several images visible by an immobile observer, which can take place for both uniform and nonuniform motion of the charges. From this viewpoint, new light is cast also on the anomalous Doppler effect. Breakup of one source into several images has been observed in all the considered examples. There is no doubt that the effect of several images can be observed in experiments, and possibly even used in practical electronics. From the viewpoint of observing the effect, most attention should be paid, in our opinion, to observation of the Vavilov-Cherenkov effect in a magnetic field (i.e., on a circular trajectory of a charge) in a medium. We note in this connection that to observe a doubling of a radiation source or vanishing of a pair of images there is no need to observe the entire circular trajectory—it suffices to observe only that part containing the points at which doubling of the source or vanishing of a pair of images takes place.</subfield>
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