Demonstrating the Sagnac Effect Using Tabletop Optics on a Rotary Platform

J. Mock, Jared Medlin, M. Richards, E. Hamilton
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Abstract

A Sagnac interferometer splits an incident beam of light into two components which travel in opposite directions of the same path. Consequently, each beam travels an equivalent distance. However, by rotating the entire apparatus at a sufficient speed, a noticeable change in the beams’ interference pattern is observed. This pattern results from one beam travelling against rotation and the other travelling with rotation, resulting in an increase or decrease in apparent path length, respectively. This is known as the Sagnac Effect. By using a traditional mirror-and-laser interferometer setup and a large turntable, we demonstrate the Sagnac Effect by showing that a given angular velocity results in a phase shift which matches what is predicted.
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在旋转平台上使用桌面光学演示Sagnac效应
Sagnac干涉仪将入射光束分成两个分量,这两个分量在相同的路径上以相反的方向传播。因此,每束光束传播的距离是相等的。然而,通过以足够的速度旋转整个装置,可以观察到光束干涉模式的明显变化。这种模式是由一束反旋转运动和另一束随旋转运动造成的,分别导致视路径长度的增加或减少。这就是众所周知的萨格纳克效应。通过使用传统的镜面和激光干涉仪设置和大型转台,我们通过显示给定角速度导致相移与预测相匹配来证明Sagnac效应。
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