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Electromagnetic energy momentum propulsion using tapered cavity resonator evanescent modes

机译:使用锥形腔谐振器渐逝模式电磁能量推进

摘要

The electromagnetic energy momentum propulsion has a cavity resonator and an electromagnetic radiation source that emits electromagnetic waves in the cavity resonator in evanescence.Electromagnetic waves generate larger electromagnetic field amplitudes and larger electromagnetic radiation pressures in the primary inner region of the cavity cavity than in the secondary inner region of the cavity resonator.The difference between the amplitude of the electromagnetic field in the primary internal domain of the cavity resonator and the electromagnetic amplitude in the secondary inner region of the cavity resonator forms a high directivity electromagnetic energy momentum tensor and provides a high directivity general relativistic metric tensor.As a result, in a cavity resonator, force is generated in the form of thrust or acceleration, which propagates the device in a direction substantially perpendicular to the primary inner surface region.
机译:电磁能量推进具有腔谐振器和电磁辐射源,其发射腔谐振器中的腔谐振器中的电磁波。电磁波在腔腔的主内部区域中产生较大的电磁场幅度和较大的电磁辐射压力而不是中的腔室中的初级内部区域中的电磁场幅度和较大的电磁辐射压力腔谐振器的内部区域。腔谐振器的初级内部结构域的电磁场幅度与腔谐振器的次级内部区域中的电磁振幅之间的差异形成高方向性电磁能量张量并提供高度方向性一般相对论的公制张量。结果,在腔谐振器中,以推力或加速度的形式产生力,其在基本垂直于主内表面区域的方向上传播装置。

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