首页> 外文期刊>Journal of Magnetohydrodynamics, Plasma and Space Research >ON THE 5D EXTRA-FORCE ACCORDING TO BASINI-CAPOZZIELLO-PONCE DE LEON FORMALISM AND THE EXPERIMENTAL RESEARCH OF EXTRA DIMENSIONS ON-BOARD INTERNATIONAL SPACE STATION(ISS) USING LASER BEAMS
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ON THE 5D EXTRA-FORCE ACCORDING TO BASINI-CAPOZZIELLO-PONCE DE LEON FORMALISM AND THE EXPERIMENTAL RESEARCH OF EXTRA DIMENSIONS ON-BOARD INTERNATIONAL SPACE STATION(ISS) USING LASER BEAMS

机译:巴斯尼-卡波佐洛-庞塞·德莱昂形式的5D附加力研究及国际空间站(ISS)上使用激光束的超尺寸实验研究

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摘要

We analyze the possibility of Experimental Research of Extra Dimensions On-Board International Space Station (ISS) by using a Satellite carrying a Laser de-vice(optical Laser) on the other side of Earth Orbit targeted towards ISS. The Sun will be between the Satellite and the ISS so the Laser will pass the neighborhoods of the Sun at a distance R in order to reach ISS. The Laser beam will be Gravitationally Bent according to Classical General Relativity and the Extra Terms predicted by Kar-Sinha in the Gravitational Bending Of Light due to the presence of Extra Dimensions can perhaps be measured with precision equipment. By computing the Gravitational Bending according to Einstein we know the exact position where the Laser will reach the target on-board ISS. However if the Laser arrives at ISS with a Bending different than the one predicted by Einstein and if this difference is equal to the Extra Terms predicted by Kar-Sinha then this experience would proof that we live in a Universe of more than 4 Dimensions. We demonstrate in this work that ISS have the needed precision to detect these Extra Terms(see eq 137 in this work). Such experience would resemble the measures of the Gravitational Bending Of Light by Sir Arthur Stanley Eddington in the Sun Eclipse of 1919 that helped to proof the correctness of General Relativity although in ISS case would have more degrees of accuracy because we would be free from the interference of Earth Atmosphere.
机译:我们通过使用在针对ISS的地球轨道另一侧携带激光装置(光学激光)的卫星来分析超尺寸车载国际空间站(ISS)的实验研究的可能性。太阳将位于卫星和国际空间站之间,因此激光将以距离R穿过太阳附近,从而到达国际空间站。根据古典相对论,激光束将被重力弯曲,由于存在额外尺寸,Kar-Sinha在重力引力弯曲中预测的额外术语也许可以用精密设备测量。通过根据爱因斯坦计算引力弯曲,我们知道激光将到达机载ISS上目标的确切位置。但是,如果激光以与爱因斯坦预测的弯​​曲不同的方式到达国际空间站,并且如果这种差异等于卡尔·辛哈预测的额外条款,那么这种经验将证明我们生活在一个4维以上的宇宙中。我们在这项工作中证明ISS具有检测这些额外条款所需的精度(请参见本工作中的eq 137)。这样的经历类似于1919年日蚀时亚瑟·斯坦利·爱丁顿爵士在《重力引力》中的测量方法,该方法有助于证明广义相对论的正确性,尽管在国际空间站的情况下,它的准确性更高,因为我们将不受干扰。地球大气。

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