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Compact fiber optical interferometer technique to measure picometer displacements in biological piezoelectric materials

机译:紧凑型光纤干涉仪技术测量生物压电材料中的微米仪位移

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摘要

A simple and robust fiber optical interferometer was developed to non-invasively study the weak piezoelectric effect from thin samples. A biological sample from inter-molt dactyl clubs obtained from the mantis shrimp was used as the test sample. The non-contact technique can measure displacements better than 0.5 pm for samples subjected to large electric fields. The approach utilizes a simple visible diode laser, commercial optical fibers and, the phase dependent detection of an oscillating cavity at different frequencies from 0.5?kHz to 2.0?kHz. The piezoelectric constant of the biological samples was calculated from the optical interference fringes and determined to be in the range of 0.3?0.5 pm V-?1. The noise of 20 fm Hz(?0.5) in the setup is primarily due to thermally associated strains from current flow to the sample electrodes during the measurement.
机译:开发了一种简单且坚固的光纤光学干涉仪,以非侵入地研究来自薄样本的弱压电效果。 从Mantis虾中获得的Molt蜕皮杆菌的生物样品用作测试样品。 非接触技术可以测量比0.5 pm更好的位移,用于经受大电场的样品。 该方法利用简单的可见二极管激光器,商业光纤,以及从0.5ΩkHz的不同频率的相位依赖性检测振荡腔。kHz。 从光学干涉条纹计算生物样品的压电常数,并确定为0.3≤0.5μmV-α1。 设定中20 fm Hz(α0.5)的噪声主要是由于在测量期间从电流流到样品电极的热相关的菌株。

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