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动态阴影成像实验中图像漂移的建模与校正

Modeling and correction of image drift in dynamic shadowgraphy experiments.

作者信息

Castellini Stefano, Brizioli Matteo, Giraudet Cédric, Carpineti Marina, Croccolo Fabrizio, Giavazzi Fabio, Vailati Alberto

机构信息

Dipartimento di Fisica"A. Pontremoli", Università degli Studi di Milano, Milan, Italy.

Dipartimento di Biotecnologie Mediche e Medicina Traslazionale, Università degli Studi di Milano, Segrate, Italy.

出版信息

Eur Phys J E Soft Matter. 2024 Apr 8;47(4):25. doi: 10.1140/epje/s10189-024-00413-y.

DOI:10.1140/epje/s10189-024-00413-y
PMID:38587607
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11249426/
Abstract

The study of phoretic transport phenomena under non-stationary conditions presents several challenges, mostly related to the stability of the experimental apparatus. This is particularly true when investigating with optical means the subtle temperature and concentration fluctuations that arise during diffusion processes, superimposed to the macroscopic state of the system. Under these conditions, the tenuous signal from fluctuations is easily altered by the presence of artifacts. Here, we address an experimental issue frequently reported in the investigation by means of dynamic shadowgraphy of the non-equilibrium fluctuations arising in liquid mixtures under non-stationary conditions, such as those arising after the imposition or removal of a thermal stress, where experiments show systematically the presence of a spurious contribution in the reconstructed structure function of the fluctuations, which depends quadratically from the time delay. We clarify the mechanisms responsible for this artifact, showing that it is caused by the imperfect alignment of the sample cell with respect to gravity, which couples the temporal evolution of the concentration profile within the sample with the optical signal collected by the shadowgraph diagnostics. We propose a data analysis protocol that enables disentangling the spurious contributions and the genuine dynamics of the fluctuations, which can be thus reliably reconstructed.

摘要

对非平稳条件下的拖曳输运现象进行研究存在若干挑战,主要与实验装置的稳定性有关。在用光学手段研究扩散过程中出现的细微温度和浓度波动时,情况尤其如此,这些波动叠加在系统的宏观状态之上。在这些条件下,波动产生的微弱信号很容易因伪像的存在而改变。在此,我们解决了一个在通过动态阴影成像法研究非平稳条件下液体混合物中出现的非平衡波动时经常报道的实验问题,例如在施加或去除热应力后出现的波动,实验系统地表明在波动的重构结构函数中存在虚假贡献,该贡献与时间延迟呈二次方关系。我们阐明了造成这种伪像的机制,表明它是由样品池相对于重力的不完全对准引起的,这将样品内浓度分布的时间演化与阴影诊断收集的光信号耦合在一起。我们提出了一种数据分析协议,能够分离虚假贡献和波动的真实动力学,从而可以可靠地重构波动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6db1/11249426/4e0250a72edd/10189_2024_413_Fig4_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6db1/11249426/f84b46ef2d54/10189_2024_413_Fig1_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6db1/11249426/8c3654072ce6/10189_2024_413_Fig2_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6db1/11249426/db258da66ffd/10189_2024_413_Fig3_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6db1/11249426/4e0250a72edd/10189_2024_413_Fig4_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6db1/11249426/f84b46ef2d54/10189_2024_413_Fig1_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6db1/11249426/8c3654072ce6/10189_2024_413_Fig2_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6db1/11249426/db258da66ffd/10189_2024_413_Fig3_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6db1/11249426/4e0250a72edd/10189_2024_413_Fig4_HTML.jpg

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