Characterization of electromechanical actuator implemented to phase-shift system applied to a Michelson interferometer

A. Barcelata-Pinzón, C. Meneses Fabián, R. Juarez-Salazar, M. Durán-Sánchez, R. Álvarez-Tamayo, C. Robledo-Sánchez, J. L. Muñoz-Mata, J. F. Casco-Vázquez
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Abstract

Numerical results are presented to show the characterization of an electromechanical actuator capable to achieve equally spaced phase shifts and fraction linear wavelength displacements aided by an interface and a computational system. Measurements were performed by extracting the phase with consecutive interference patterns obtained in a Michelson arrangement setup. This paper is based in the use of inexpensive resources on stability adverse conditions to achieve similar results to those obtained with high-grade systems.
应用于迈克尔逊干涉仪相移系统的机电致动器特性
数值结果表明,在界面和计算系统的辅助下,能够实现等间距相移和分数线性波长位移的机电致动器的特性。测量是通过在迈克尔逊排列装置中获得的连续干涉图案提取相位来进行的。本文是在利用廉价资源的基础上,在稳定性不利的条件下,取得与高档系统相似的结果。
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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