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超声调制液体表面产生的动态焦散线

Dynamic caustics by ultrasonically modulated liquid surface.

作者信息

Nagakura Koki, Fushimi Tatsuki, Tsutsui Ayaka, Ochiai Yoichi

机构信息

Graduate School of Comprehensive Human Sciences, University of Tsukuba, Tsukuba, 305-8550, Japan.

Institute of Library, Information and Media Science, University of Tsukuba, Tsukuba, Ibaraki, 305-8550, Japan.

出版信息

Sci Rep. 2025 Aug 29;15(1):31928. doi: 10.1038/s41598-025-16190-3.

Abstract

This paper presents a method for generating dynamic caustic patterns by utilising dual-optimised holographic fields with Phased Array Transducer (PAT). Building on previous research in static caustic optimisation and ultrasonic manipulation, this approach employs computational techniques to dynamically shape fluid surfaces, thereby creating controllable and real-time caustic images. The system employs a Digital Twin framework, which enables iterative feedback and refinement, thereby improving the accuracy and quality of the caustic patterns produced. This paper extends the foundational work in caustic generation by integrating liquid surfaces as refractive media. This concept has previously been explored in simulations but not fully realised in practical applications. The utilisation of ultrasound to directly manipulate these surfaces enables the generation of dynamic caustics with a high degree of flexibility. The Digital Twin approach further enhances this process by allowing for precise adjustments and optimisation based on real-time feedback. Experimental results demonstrate the technique's capacity to generate continuous animations and complex caustic patterns at high frequencies. Although there are limitations in contrast and resolution compared to solid-surface methods, this approach offers advantages in terms of real-time adaptability and scalability. This technique has the potential to be applied in a number of areas, including interactive displays, artistic installations and educational tools. This research builds upon the work of previous researchers in the fields of caustics optimisation, ultrasonic manipulation, and computational displays. Future research will concentrate on enhancing the resolution and intricacy of the generated patterns.

摘要

本文提出了一种利用相控阵换能器(PAT)的双优化全息场生成动态焦散图案的方法。基于先前在静态焦散优化和超声操纵方面的研究,该方法采用计算技术动态塑造流体表面,从而创建可控的实时焦散图像。该系统采用数字孪生框架,实现迭代反馈和优化,从而提高所产生焦散图案的准确性和质量。本文通过将液体表面作为折射介质进行整合,扩展了焦散生成的基础工作。这一概念此前已在模拟中进行过探索,但在实际应用中尚未完全实现。利用超声波直接操纵这些表面能够高度灵活地生成动态焦散。数字孪生方法通过基于实时反馈进行精确调整和优化,进一步增强了这一过程。实验结果证明了该技术在高频下生成连续动画和复杂焦散图案的能力。尽管与固体表面方法相比,在对比度和分辨率方面存在局限性,但该方法在实时适应性和可扩展性方面具有优势。这项技术有潜力应用于多个领域,包括交互式显示器、艺术装置和教育工具。本研究建立在先前在焦散优化、超声操纵和计算显示领域的研究人员的工作基础之上。未来的研究将集中于提高所生成图案的分辨率和复杂度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd77/12397242/58155cc1b21a/41598_2025_16190_Fig1_HTML.jpg

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