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作 者:Stanislav A. Podosenov Jaykov Foukzon Alexander Potapov Elena Men’kova Stanislav A. Podosenov;Jaykov Foukzon;Alexander Potapov;Elena Men’kova(All-Russian Research Institute for Optical and Physical Measurements, Moscow, Russia;Center for Mathematical Sciences, Israel Institute of Technology, Haifa, Israel;Kotel’nikov Institute of Radioengineering and Electronics, Russian Academy of Sciences, Moscow, Russia)
机构地区:[1]All-Russian Research Institute for Optical and Physical Measurements, Moscow, Russia [2]Center for Mathematical Sciences, Israel Institute of Technology, Haifa, Israel [3]Kotel’nikov Institute of Radioengineering and Electronics, Russian Academy of Sciences, Moscow, Russia
出 处:《Journal of Applied Mathematics and Physics》2016年第4期806-843,共38页应用数学与应用物理(英文)
摘 要:The electrodynamics both in RF with prescribed law of motion and in FR with prescribed structure is considered. Parallel comparison for solutions in “uniformly accelerated” NRF M?ller system and in uniformly accelerated rigid NFR in the space of the constant curvature is carried out. The stationary criterion is formulated. On the basis of this criterion, one of the “eternal physical problems” concerning the field at uniformly accelerated charge motion is considered. The problems of electromagnetic wave spreading, Doppler’s effect and field transformations are discussed.The electrodynamics both in RF with prescribed law of motion and in FR with prescribed structure is considered. Parallel comparison for solutions in “uniformly accelerated” NRF M?ller system and in uniformly accelerated rigid NFR in the space of the constant curvature is carried out. The stationary criterion is formulated. On the basis of this criterion, one of the “eternal physical problems” concerning the field at uniformly accelerated charge motion is considered. The problems of electromagnetic wave spreading, Doppler’s effect and field transformations are discussed.
关 键 词:Noninertial Reference Frame (NFR) Möller System Space-Time Curvature Anholonomic Transformations Doppler’s Effect Electromagnetic Wave
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