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使用声捕获的用于视觉、触觉和音频呈现的体显示。

A volumetric display for visual, tactile and audio presentation using acoustic trapping.

机构信息

School of Engineering and Informatics, University of Sussex, Brighton, UK.

Department of Applied Electronics, Tokyo University of Science, Tokyo, Japan.

出版信息

Nature. 2019 Nov;575(7782):320-323. doi: 10.1038/s41586-019-1739-5. Epub 2019 Nov 13.

Abstract

Science-fiction movies portray volumetric systems that provide not only visual but also tactile and audible three-dimensional (3D) content. Displays based on swept-volume surfaces, holography, optophoretics, plasmonics or lenticular lenslets can create 3D visual content without the need for glasses or additional instrumentation. However, they are slow, have limited persistence-of-vision capabilities and, most importantly, rely on operating principles that cannot produce tactile and auditive content as well. Here we present the multimodal acoustic trap display (MATD): a levitating volumetric display that can simultaneously deliver visual, auditory and tactile content, using acoustophoresis as the single operating principle. Our system traps a particle acoustically and illuminates it with red, green and blue light to control its colour as it quickly scans the display volume. Using time multiplexing with a secondary trap, amplitude modulation and phase minimization, the MATD delivers simultaneous auditive and tactile content. The system demonstrates particle speeds of up to 8.75 metres per second and 3.75 metres per second in the vertical and horizontal directions, respectively, offering particle manipulation capabilities superior to those of other optical or acoustic approaches demonstrated until now. In addition, our technique offers opportunities for non-contact, high-speed manipulation of matter, with applications in computational fabrication and biomedicine.

摘要

科幻电影描绘了体积系统,不仅提供视觉,还提供触觉和听觉的三维(3D)内容。基于扫描体积表面、全息术、光致发光、等离子体或透镜状透镜的显示器可以创建 3D 视觉内容,而无需眼镜或其他仪器。然而,它们速度较慢,视知觉能力有限,最重要的是,依赖的操作原理无法产生触觉和听觉内容。在这里,我们展示了多模态声陷阱显示(MATD):一种悬浮的体积显示,可以同时提供视觉、听觉和触觉内容,使用声致流作为单一操作原理。我们的系统通过声学捕获粒子,并使用红、绿、蓝光照射它,以控制其颜色,因为它快速扫描显示体积。通过使用辅助陷阱进行时分复用、幅度调制和相位最小化,MATD 可以同时提供听觉和触觉内容。该系统展示了高达 8.75 米/秒和 3.75 米/秒的粒子速度,分别在垂直和水平方向上,提供了优于迄今为止展示的其他光学或声学方法的粒子操纵能力。此外,我们的技术提供了非接触、高速物质操纵的机会,在计算制造和生物医学中有应用。

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