자기장을 이용한 중력의 시공간 변형에 대한 실험적 연구

심충건
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Abstract

The curvature of spacetime represented by Einstein field equation has many physical implications, including gravity. As light is deflected by the curvature of spacetime, a magnetic field will also be influenced by the curved spacetime. A permanent magnet is generally known to maintain its persistent magnetic field on the ground as long as there is no external magnetic interference. However, a series of experiments find that there are noticeable changes in the magnetic fields distribution while the permanent magnet rotates. The magnetic field lines of the permanent magnet are deflected towards Earth’s centre, implying a possibility that we can use magnetic field, a more efficient tool than a satellite, to measure the curvature of spacetime. However, comparing the experimental results of this study with theoretically obtained values of the curvature of spacetime remains a vast area of research for future studies.
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利用磁场对重力时空变形的实验研究
爱因斯坦场方程所表示的时空曲率具有许多物理意义,包括引力。由于光受到时空曲率的偏转,磁场也会受到弯曲时空的影响。众所周知,只要没有外部磁场干扰,永磁体就能在地面上保持其持久的磁场。然而,一系列的实验发现,当永磁体旋转时,磁场分布有明显的变化。永磁体的磁力线向地球中心偏转,这意味着我们有可能利用磁场——一种比卫星更有效的工具——来测量时空的曲率。然而,将本研究的实验结果与理论得到的时空曲率值进行比较,仍是未来研究的一个广阔领域。
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