论文标题

二元卷声性全息图

Binary Volume Acoustic Holograms

论文作者

Brown, Michael D., Cox, Ben T., Treeby, Bradley E.

论文摘要

近年来,高分辨率3D打印使超声波式塑形的新型低成本方法范围如此。尤其是声学全息图,可以从单个元素传感器的MHz频率下生成任意,衍射有限的声场。这些是与薄光学全息图直接的声学类似物起作用的相板。在这项工作中,可以表明,通过使用多种聚合物3D打印,也可以生成对“厚”或体积光学全息图的声学类似物。首先,简要概述了一种用于设计一种体积全息图,该方法将一组输入字段衍射到所需的输出字段上。接下来,基于随机下坡二进制搜索的贪婪优化方法能够说明所选制造方法施加的约束。最后,一个实验测试案例设计,旨在衍射由2.54 cm,平面,PZT换能器在8个不同模式上产生的场,该模式取决于入射场的方向,以验证方法和设计方法。 8个目标字段的现场扫描表明,可以使用多聚合物打印来生成光音量全息图的声学类似物,并且可以将不同的字段多路复用到不同的入射场方向上。

In recent years high-resolution 3D printing has enabled a diverse range of new, low-cost, methods for ultrasonic wave-front shaping. Acoustic holograms, particularly, allow for the generation of arbitrary, diffraction limited, acoustic fields at MHz frequencies from single element transducers. These are phase plates that function as direct acoustic analogues to thin optical holograms. In this work it is shown that, by using multiple polymer 3D printing, acoustic analogues to 'thick' or volume optical holograms can also be generated. First, an analytic approach for designing a volume hologram that diffracts a set of input fields onto a desired set of output fields is briefly summarised. Next, a greedy optimisation approach based on random downhill binary search able to account for the constraints imposed by the chosen fabrication method is introduced. Finally, an experimental test-case designed to diffract the field generated by a 2.54 cm, planar, PZT transducer onto 8 distinct patterns dependent on the direction of the incident field is used to validate the approach and the design method. Field scans of the 8 target fields demonstrate that acoustic analogues of optical volume holograms can be generated using multi-polymer printing and that these allow the multiplexing of distinct fields onto different incident field directions.

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