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三维细菌悬浮液的密度涨落和能谱。

Density fluctuations and energy spectra of 3D bacterial suspensions.

机构信息

Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis, MN 55455, USA.

College of Life Science and Technology, Guangxi University, Nanning 530004, Guangxi, China.

出版信息

Soft Matter. 2021 Dec 15;17(48):10806-10817. doi: 10.1039/d1sm01183a.

Abstract

Giant number fluctuations are often considered as a hallmark of the emergent nonequilibrium dynamics of active fluids. However, these anomalous density fluctuations have only been reported experimentally in two-dimensional dry active systems heretofore. Here, we investigate density fluctuations of bulk suspensions, a paradigm of three-dimensional (3D) wet active fluids. Our experiments demonstrate the existence and quantify the scaling relation of giant number fluctuations in 3D bacterial suspensions. Surprisingly, the anomalous scaling persists at small scales in low-concentration suspensions well before the transition to active turbulence, reflecting the long-range nature of hydrodynamic interactions of 3D wet active fluids. To illustrate the origin of the density fluctuations, we measure the energy spectra of suspension flows and explore the density-energy coupling in both the steady and transient states of active turbulence. A scale-invariant density-independent correlation between density fluctuations and energy spectra is uncovered across a wide range of length scales. In addition, our experiments show that the energy spectra of bacterial turbulence exhibit the scaling of 3D active nematic fluids, challenging the common view of dense bacterial suspensions as active polar fluids.

摘要

大量波动通常被认为是活跃流体非平衡动力学出现的标志。然而,迄今为止,这些异常的密度波动仅在二维干燥活跃系统中得到了实验报道。在这里,我们研究了悬浮液的密度波动,悬浮液是三维(3D)湿活跃流体的范例。我们的实验证明了三维细菌悬浮液中大量波动的存在,并对其进行了量化,确定了其标度关系。令人惊讶的是,在向活跃湍流转变之前,在低浓度悬浮液的小尺度上,异常标度仍然存在,反映了 3D 湿活跃流体的水动力相互作用的远程性质。为了说明密度波动的起源,我们测量了悬浮流的能量谱,并在活跃湍流的稳态和瞬态研究了密度-能量的耦合。在广泛的尺度范围内,揭示了密度波动和能量谱之间具有密度无关的标度不变相关性。此外,我们的实验表明,细菌湍流的能量谱表现出 3D 活跃向列流体的标度,这对密集细菌悬浮液作为活跃极流体的常见观点提出了挑战。

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