Weerasinghe Gagana, Servais Bram, Heath Daniel, Martin Samuel T, Collins David J
Department of Biomedical Engineering, The University of Melbourne, Parkville, Victoria, Australia.
CSIRO Manufacturing, Private Bag 10, Clayton South, Victoria 3169, Australia.
Biomicrofluidics. 2025 Apr 15;19(2):024105. doi: 10.1063/5.0258632. eCollection 2025 Mar.
Acoustic holography offers the ability to generate designed acoustic fields, enhancing the versatility of acoustic micromanipulation. However, the quality of the generated holograms depends on the nature of the iterative algorithm that is utilized, where the iterative angular spectrum approach (IASA) has been the standard method to date. Here, we introduce a novel approach that categorically improves IASA performance, where we apply the principles of simulated annealing for the generation of high-quality acoustic holograms. We utilize this to realize significant improvements in hologram quality via simulations, fabricated holograms, experimental particle patterning, and high-resolution 2D hydrophone scans. Comparing holograms produced from IASA and/or simulated annealing, we demonstrate that the use of simulated annealing in acoustic holography results in sharper reconstructions and improved hologram outputs across a range of evaluation metrics.
声学全息术能够生成设计好的声场,增强了声学微操纵的多功能性。然而,所生成全息图的质量取决于所采用的迭代算法的性质,其中迭代角谱方法(IASA)是迄今为止的标准方法。在此,我们引入一种全新的方法,该方法能显著提高IASA的性能,即我们将模拟退火原理应用于高质量声学全息图的生成。我们通过模拟、制作的全息图、实验性粒子图案化以及高分辨率二维水听器扫描,利用此方法实现了全息图质量的显著提升。通过比较由IASA和/或模拟退火生成的全息图,我们证明在声学全息术中使用模拟退火会在一系列评估指标上带来更清晰的重建效果和更好的全息图输出。