Gravitoelectromagnetic Communications Model for under Extremely Low Frequency Interactions between Distant Cosmic Structures

A. Salcedo
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Abstract

Classical electromagnetic waves with frequencies below 3Hz, referred as Under Extremely Low Frequency (UELF) waves, can be radiated by rotating cosmic structures with an associated magnetic field, like planets, stars, pulsars and galaxies. Considering the extreme time scales that characterize UELF waves, which can be as long as billions of years, the associated wavelengths are so large that long range interactions could be produced between extremely distant cosmic structures that could be billions of light years apart. The extreme dimensions, masses and speeds of the radiating cosmic structures, on the other hand, presume that the distant interaction between the studied cosmic objects may not be electromagnetic only but also gravitational (in spite of the humongous distances involved), so the study of UELF waves needs to consider both effects combined. Gravitational wave theory is the leading line of work trying to explain long range interactions due to gravity forces; yet, the present working paper attains to the gravitomagnetic field theory to build a novel communications model that integrates classical forces produced by moving electric charges and masses into a single framework. The proposed model allows an integral approach to investigate long range interactions between the explained distant cosmic structures, and invites to reflect and discuss about the nature and implications of UELF radiation.
遥远宇宙结构间极低频相互作用的引力电磁通信模型
频率低于3Hz的经典电磁波,被称为极低频(UELF)波,可以通过旋转具有相关磁场的宇宙结构(如行星,恒星,脉冲星和星系)来辐射。考虑到极低频波的极端时间尺度,它可以长达数十亿年,相关的波长是如此之大,以至于在相距数十亿光年的极遥远的宇宙结构之间可以产生远距离相互作用。另一方面,辐射宇宙结构的极端尺寸、质量和速度,假设所研究的宇宙物体之间的远距离相互作用可能不仅仅是电磁的,还有引力的(尽管涉及到巨大的距离),因此UELF波的研究需要考虑这两种效应的结合。引力波理论是试图解释由引力引起的远距离相互作用的主要工作;然而,本文利用重力磁场理论,建立了一个新的通信模型,该模型将经典的由移动电荷和质量产生的力整合到一个单一的框架中。提出的模型允许一种整体的方法来研究被解释的遥远宇宙结构之间的远距离相互作用,并邀请人们反思和讨论UELF辐射的性质和含义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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