技术诊断系统用单层金属纳米粒子光纤光声换能器的特性

A. P. Mikitchuk, K. V. Kozadaev
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摘要

本工作主要是对光纤光声换能器原型中纳米结构的微观结构和形态特性进行实验研究。该换能器是为了证实作者在研究最有效光声基因定量条件时所得到的理论研究结果。为了解决制造光声换能器时出现的主要问题,即减少吸收层的厚度,我们使用了一种基于单层银纳米粒子的纳米结构,其平均直径为35 nm, rms尺寸为12 nm。首次提出了同时测量光声转换效率和光声换能器频率响应的方法。该方法允许对传感器的输出参数和光信号的调制模式进行实验研究。该方法基于光声换能器的主测量通道和基于光纤耦合器和光电二极管的参考通道的使用。实验表明,利用光声换能器样机可以可靠地产生频率为10 -18 MHz的超声波。在1小时的辐照下,未观察到二维表面纳米结构的降解。这使得这种类型的光声换能器被用作新一代技术诊断系统的一部分。
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Characteristics of fiber-optic photoacoustic transducers with monolayer of metal nanoparticles for systems of technical diagnostics
The work is devoted to the experimental study of the microstructural and morphological properties of nanostructures as part of a prototype of fiber-optic photoacoustic transducer. The transducer has been created to confirm the theoretical investigations previously obtained by the authors during the study the conditions of the most effective photoacoustic gene ration. To solve the main problem that arises when creating photoacoustic transducers, namely reducing the thickness of the absorbing layer, we used a nanostructure based on a monolayer of silver nanoparticles with size gamma-distribution, the average diameter of 35 nm with RMS-size of 12 nm. The method of simultaneous measuring both efficiency of photoacoustic conversion and frequency response of a photoacoustic transducer is proposed for the first time. The method allows experimental investigation of transduces output parameters versus the modulation mode of the optical signal. The proposed method is based on the usage of the main measurement channel for irradiating the photoacoustic transducer and a reference channel based on fiber optical coupler and photodiode. The experiment shows the reliable generation of ultrasound at frequencies of 10 –18 MHz with a prototype of photoacoustic transducer. During one hour irradiation, degradation of two-dimensional surface nanostructures has not been observed. This allows such type of photoacoustic transducer to be used as part of a new generation of technical diagnostics systems.
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