Characterization of electrooptic polymer applied to microwave sensing

A. Gardelein, S. Le Tacon, E. Tanguy, N. Breuil, T. Razban
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引用次数: 3

Abstract

In this paper we present electrooptic measurement of a crosslinked side chain PGMA/DR1 polymer. Measured values are as high as 11 pm/V at 1310 nm, we present measurement as a function of incident beam reflexion point and show dependance between the reflexion point location over the sample and the measured electrooptic coefficient. We present low frequency relative dielectric constant using a capacitance measurement method. Using this method, we found a relative permittivity of 4.46plusmn0.38 for our polymer. We present a new electrooptic microwave sensor, where we enhance the electrooptical interaction by increasing the optical path length using a Fabry-Perot cavity and we concentrate the electric field inside our device using a microstrip resonator. Expected interaction enhancement value is expected to be as high 310deg compared to the simple reflexion case at low frequency
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应用于微波传感的电光聚合物的表征
本文提出了一种交联侧链PGMA/DR1聚合物的电光测量方法。在1310 nm处测量值高达11 pm/V,我们将测量值作为入射光束反射点的函数,并显示了样品上反射点位置与测量电光系数之间的相关性。我们用电容测量法给出了低频相对介电常数。利用这种方法,我们发现我们的聚合物的相对介电常数为4.46±0.38。我们提出了一种新的电光微波传感器,其中我们通过使用Fabry-Perot腔增加光路长度来增强电光相互作用,并使用微带谐振器将电场集中在器件内。与低频的简单反射情况相比,预期的相互作用增强值预计高达310度
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