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An improved Michelson interferometer: smoothing out the rough spots for a more effective teaching tool

机译:一种改进的迈克尔森干涉仪:平滑粗糙的斑点,以获得更有效的教学工具

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The Michelson interferometer is a classic tool for demonstrating the wave nature of light, and it is a cornerstone of the optics curriculum. But many students' experiences with this device are higher in frustration than they are in learning. That situation motivated an effort to make aligning the tool less a test of a visual acuity and patience, and more of an introduction to optics phenomena and optical engineering. Key improvements included an added beam-splitter to accommodate multiple observers, a modified telescope to quickly and reliably obtain parallel mirrors, and a series of increasing spectral-width light sources to obtain equal path lengths. This greatly improved students' chances of success, as defined by achieving "white light fringes". When presenting these new features to the students, high importance is placed on understanding why alignment was so difficult with the original design, and why the changes made alignment easier. By exposing the rationale behind the improvements, students can observe the process of problem-solving in an optical engineering scenario. Equally important is the demonstration that solutions can be devised or adapted based on the parts at hand, and that implementations only achieve a highly "polished" state after several design iterations.
机译:迈克尔森干涉仪是一种展示光波性质的经典工具,它是光学课程的基石。但许多学生在这个设备的经历令人沮丧地比在学习中更高。这种情况有动力努力使工具减少对视力和耐心的测试,以及更多的光学现象和光学工程。关键改进包括一个添加的分束器,以容纳多个观察者,改进的望远镜,以快速可靠地获得平行镜,以及一系列增加的光谱宽度光源,以获得相等的路径长度。这大大提高了学生取得​​成功的机会,通过实现“白光条纹”所定义。在向学生展示这些新功能时,对理解为什么对原始设计的对齐是如此困难的高度重视,以及为什么改变对对齐更容易。通过将理由暴露在改进后,学生可以在光学工程方案中观察解决问题的过程。同样重要的是,可以基于手头的部件设计或调整解决方案的演示,并且该实现仅在几次设计迭代后实现高度“抛光的”状态。

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