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Two-dimensional electric-field vector measurement by a LiTaO_(3) electro-optic probe tip

机译:LiTaO_(3)电光探针头的二维电场矢量测量

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摘要

An electro-optic probe tip that is made from LiTaO crystal to make tangentially two-dimensional electric-field (E-field) vector measurements is presented. We combine a new electro-optic modulation technique and a conventional one to resolve the two E-field components. The new modulation effect on the optical probing beam is caused by rotation of the principal axis the electro-optic crystal, which is proportional to the E-field. Inasmuch as there is no free charge involved in the axis rotation, rotation modulation of the axis can be as fast as conventional modulation. The principles are carefully derived, and an experimental system constructed, to measure two-dimensional E-field vectors on a test pattern. The results are in good agreement with those obtained with commercial software for electromagnetic simulation. The sensitivities of two tangential E-field components are 76 (mV/cm)/(Hz)~(1/2) and 0.8 (V/cm)/(Hz)~(1/2), respectively. The root-mean-square error of an E-field directional measurement is 1.5°.
机译:提出了一种由LiTaO晶体制成的电光探针头,以进行切向二维电场(E场)矢量测量。我们结合了一种新的电光调制技术和一种常规的技术来解决两个电场分量。对光探测光束的新调制效果是由电晶体的主轴旋转引起的,该旋转与电场成正比。由于轴旋转中不​​包含自由电荷,因此轴的旋转调制可以与常规调制一样快。这些原理经过仔细推导,并构建了一个实验系统,以测量测试图案上的二维电场矢量。结果与使用商业软件进行电磁仿真获得的结果吻合良好。两个切向电场分量的灵敏度分别为76(mV / cm)/(Hz)〜(1/2)和0.8(V / cm)/(Hz)〜(1/2)。电场方向测量的均方根误差为1.5°。

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