论文标题

分层介质中光声转化的电扭曲机制的扩增

Amplification of Electrostriction Mechanism of Photoacoustic Conversion in Layered Media

论文作者

Knyazev, Grigory, Ignatyeva, Daria, Sopko, Ivan, Belotelov, Vladimir, Romanov, Oleg

论文摘要

在这项工作中,我们对两种具有低光吸收的材料的界面上的光学能量转化的电术机理进行了分析。我们将这种转化方法与基于薄金属膜的广泛使用的热转化方法进行了比较。结果表明,在均质培养基的情况下,电绞痛机制的贡献显着降低。我们证明了通过激发引导模式的激发来扩增产生的声学信号的可能性,该模式将能量定位在薄(约200-400 nm厚)的介电层中。由于结构中的高电磁场能量浓度,与入射光强度相比,强度的局部值增加了两个以上的数量级,这也允许相应地增加压力的幅度。因此,在项目中,我们提出了新型分层的介电结构,其中由于引导模式激发了电灌溉效应。

In this work we have performed an analysis of electrostriction mechanism of optical to acoustical energy conversion on the interface of two materials with low optical absorption. We compared this method of conversion with widely used thermal conversion based on thin metal film. It was shown, that the contribution of electrostriction mechanism is significantly lower in case of homogeneous medium. We demonstrated the possibility to amplify the generated acoustic signal by excitation of the guided modes, which energy is localized in a thin (of about 200-400 nm thickness) dielectric layer. Due to high electromagnetic field energy concentration in the structure, local values of intensity increase by more than two order of magnitude in comparison to intensity of incident light, that also allows to increase the amplitude of the pressure correspondingly. Thus, in the project we propose the novel layered dielectric structures, in which electrostriction effect occurs due to excitation of the guided modes.

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