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Phase retardation measurement of an arbitrary wave plate based on magneto-optical modulating and residue detecting of the base frequency component of the signal

机译:基于磁光调制和渣油检测信号的基础频率分量的任意波片的相位延迟测量

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摘要

Wave plates (WPs) are key components in optical polarization systems whose phase retardations should be measured accurately. The key point of most light extinction methods focuses on how to precisely judge the system's extinction state and then confirm corresponding angle positions of the optical components. Usually the extinction state of a measurement system is judged by detecting residue of outgoing light intensity. In this Letter, a method of measuring the phase retardation of an arbitrary WP based on magneto-optical modulation is proposed. A magneto-optical modulator is placed between the standard quarter-WP and the second polarizer on the basis of the traditional optical path. The measurement signal is obtained after the outgoing light passing through a band-pass filter whose center frequency is the same as the frequency of the magneto-optic modulator's driving voltage. This method detects the base frequency component instead of the whole intensity of the outgoing light, so as to get better judgement accuracy of the system's extinction state. The arbitrary WP's phase retardation can be accurately derived by detecting the residue of the base frequency component of the outgoing light signal and then judging the angle position of the second polarizer when the system is in the state of extinction. The corresponding theoretical formulas are deduced by the Jones matrix, and the WP measuring system is established. The error analysis shows that the system measurement uncertainty is about 4.5' if the experiment temperature varies in the range of 0.1 degrees C. Experiment results on half-WPs and quarter-WPs show that the presented method is in good agreement with other methods. The measurement repeatability is also good, with the standard deviation about 2'. (C) 2018 Optical Society of America
机译:波板(WPS)是光学偏振系统中的关键部件,其相位延迟应准确测量。大多数光消除方法的关键点侧重于如何精确地判断系统的消光状态,然后确认光学部件的相应角度位置。通常通过检测输出光强度的残留物来判断测量系统的消光状态。在这封信中,提出了一种基于磁光调制测量任意WP的相位延迟的方法。基于传统光路,将磁光调制器放置在标准四分之一WP和第二偏振器之间。在通过带通滤波器的传出光之后获得测量信号,其中心频率与磁光调制器的驱动电压的频率相同。该方法检测基频分量而不是输出光的整体强度,从而获得系统的消光状态的更好的判断精度。通过检测输出光信号的基频分量的残留物,然后在系统处于灭绝状态时判断第二偏振器的角度位置,可以精确地得出任意WP的相位延迟。通过琼斯矩阵推断相应的理论公式,建立WP测量系统。误差分析表明,如果实验温度在0.1℃的范围内变化,系统测量不确定度在0.1℃的范围内。上半年和四分之一WPS的实验结果表明,呈现的方法与其他方法吻合良好。测量重复性也很好,标准偏差约为2'。 (c)2018年光学学会

著录项

  • 来源
    《Optics Letters》 |2018年第18期|共4页
  • 作者单位

    North China Univ Technol Sch Mech &

    Mat Engn Beijing 100144 Peoples R China;

    Beijing Inst Technol Sch Mech Engn Beijing 100081 Peoples R China;

    Beijing Inst Technol Sch Mech Engn Beijing 100081 Peoples R China;

    Beijing Inst Technol Sch Mech Engn Beijing 100081 Peoples R China;

    Beijing Inst Technol Sch Mech Engn Beijing 100081 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;光学;
  • 关键词

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