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Frequency dependence of slab coupled optical sensor sensitivity

机译:平板耦合光学传感器灵敏度的频率依赖性

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This paper presents the frequency-dependent sensitivity of slab-coupled optical fiber sensors (SCOSs). This dependence is caused by the frequency characteristics of the relative permittivity. We show experimentally the frequency dependence of SCOS sensitivity for frequencies in the range of 1 kHz to 1 MHz for SCOS fabricated with both potassium titanyl phosphate (KTP) and lithium niobate (LiNbO_3). We conclude that x-cut KTP SCOSs are preferred for measuring fields above 300 kHz as they are 1.55× more sensitive than x-cut LiNbO_3 SCOSs to the higher frequency fields. However, since KTP SCOSs experience increasing permittivity for low frequencies, SCOSs made with LiNbO_3 may be used for low frequency sensing applications due to their flat sensitivity response. For a 10 kHz electric field, an x cut LiNbO_3 SCOS is approximately 3.43× more sensitive than an x-cut KTP SCOS.
机译:本文介绍了平板耦合光纤传感器(SCOS)的频率相关灵敏度。这种依赖性是由相对介电常数的频率特性引起的。我们通过实验显示了SCOS灵敏度的频率依赖性,该频率对于钛酸磷酸钾(KTP)和铌酸锂(LiNbO_3)制成的SCOS在1 kHz到1 MHz范围内的频率。我们得出结论,X切KTP SCOS对于测量300 kHz以上的场是首选,因为它们比X切LiNbO_3 SCOS对高​​频场的灵敏度高1.55倍。但是,由于KTP SCOS对低频的介电常数不断提高,因此,由于LiNbO_3制成的SCOS具有平坦的灵敏度响应,因此可以用于低频传感应用。对于10 kHz电场,X切割的LiNbO_3 SCOS的灵敏度比X切割的KTP SCOS高约3.43倍。

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