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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Phononic crystals based on LiNbO3 realized using domain inversion by electron-beam irradiation
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Phononic crystals based on LiNbO3 realized using domain inversion by electron-beam irradiation

机译:基于电子束辐照域反转实现基于LiNbO3的声子晶体

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摘要

We report in this paper about the realization of domain inversion in z-cut lithium niobate by electron beam irradiation in order to perform phononic crystals. The fabrication of these phononic crystals on z-cut LiNbO3, which is, in our case, a periodic repetition of voids and LiNbO3, was achieved by domain inversion followed by wet etching, taking advantage of the large difference in etching rate between z+ and z- faces. A pertinent choice of irradiation conditions such as accelerating voltage, beam current, and charge density was determined and optimized. Two-dimensional structures at the micrometer scale were then realized on z-cut LiNbO3. We demonstrate the achievement of hexagons with diameters between 2 mum and 18 mum, with a very important depth close to 30 mum, which depends on the etching time and the hole size. The obtained structures, which exhibit a filling fraction varying from 1% to 64%, were characterized before etching by polarizing microscope to visualize the inverted domains. After HF etching, scanning electron microscopy was used to observe the obtained phononic structures. Taking into account the obtained filling fraction values and the size of created hexagons, the frequency band gap of these structures is expected at a range of 200 to 350 MHz. As expected in this frequency range, we have proven experimentally the existence of the phononic band gap on z-cut LiNbO3 by combination of a realized phononic crystal with a surface acoustic wave (SAW) device.
机译:我们在本文中报道了通过电子束辐照实现Z形切割铌酸锂中畴反转以执行声子晶体。在z切LiNbO3上制造这些声子晶体,在我们的情况下,这是空隙和LiNbO3的周期性重复,这是通过畴反转然后湿法刻蚀实现的,利用了z +和z之间刻蚀率的巨大差异。 -脸确定并优化了辐照条件的相关选择,例如加速电压,束流和电荷密度。然后在z切割LiNbO3上实现了微米级的二维结构。我们演示了直径在2毫米至18毫米之间,非常重要的深度接近30毫米的六边形的实现,这取决于蚀刻时间和孔的大小。在通过偏光显微镜蚀刻以可视化倒置区域之前,表征所获得的结构,其填充分数在1%至64%之间变化。在HF蚀刻之后,使用扫描电子显微镜观察获得的声子结构。考虑到获得的填充分数值和创建的六边形的大小,这些结构的频带间隙预计在200至350 MHz的范围内。如在该频率范围内所预期的,我们已通过将已实现的声子晶体与表面声波(SAW)装置相结合,在实验上证明了Z形LiNbO3上存在声子带隙。

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