Observation of the Talbot effect from a surface acoustic wave dynamic grating

M. Fisicaro, Y. C. Doedes, T. A. Steenbergen, M. P. van Exter, W. Löffler
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Abstract

We demonstrate the dynamical Talbot effect caused by optical diffraction from standing surface acoustic waves (SAWs). The Talbot effect is a wave interference phenomenon in the Fresnel regime, and we observe it with a fiber-based scanning optical interferometer on a SAW Fabry-Perot cavity. By studying the interferometric signal at 1 GHz, we first discover the existence of an amplitude-modulated term, that can exceed in magnitude the usual phase-modulated term, enabling a new way of imaging surface acoustic waves. Secondly, by displacing the acoustic device from the beam focus we reveal the optical Talbot effect, where despite the curved wavefronts of the optical field, the conventional Talbot length appears. As a consequence, the amplitude modulation vanishes at periodic positions of the acoustic wave relative to the beam focus.
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从表面声波动态光栅观测塔尔博特效应
我们展示了由声表面波(SAW)的光学衍射引起的动态塔尔博特效应。塔尔博特效应是菲涅尔机制中的一种波干涉现象,我们在声表面波法布里-珀罗腔上使用基于光纤的扫描光学干涉仪对其进行了观测。通过研究 1 GHz 的干涉信号,我们首先发现了振幅调制项的存在,其幅度超过了通常的相位调制项,从而为表面声波成像提供了一种新的方法。因此,在声波相对于光束焦点的周期性位置上,振幅调制会消失。
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