Dreyfus Remi, Xu Ye, Still Tim, Hough L A, Yodh A G, Torquato Salvatore
Complex Assemblies of Soft Matter, CNRS-Rhodia-UPenn UMI 3254, Bristol, Pennsylvania 19007-3624, USA.
Complex Assemblies of Soft Matter, CNRS-Rhodia-UPenn UMI 3254, Bristol, Pennsylvania 19007-3624, USA and Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6396, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Jan;91(1):012302. doi: 10.1103/PhysRevE.91.012302. Epub 2015 Jan 8.
Hyperuniformity characterizes a state of matter for which (scaled) density fluctuations diminish towards zero at the largest length scales. However, the task of determining whether or not an image of an experimental system is hyperuniform is experimentally challenging due to finite-resolution, noise, and sample-size effects that influence characterization measurements. Here we explore these issues, employing video optical microscopy to study hyperuniformity phenomena in disordered two-dimensional jammed packings of soft spheres. Using a combination of experiment and simulation we characterize the possible adverse effects of particle polydispersity, image noise, and finite-size effects on the assignment of hyperuniformity, and we develop a methodology that permits improved diagnosis of hyperuniformity from real-space measurements. The key to this improvement is a simple packing reconstruction algorithm that incorporates particle polydispersity to minimize the free volume. In addition, simulations show that hyperuniformity in finite-sized samples can be ascertained more accurately in direct space than in reciprocal space. Finally, our experimental colloidal packings of soft polymeric spheres are shown to be effectively hyperuniform.
超均匀性描述了一种物质状态,对于这种状态,(标度后的)密度涨落在最大长度尺度上趋近于零。然而,由于有限分辨率、噪声和影响表征测量的样本大小效应,确定实验系统的图像是否超均匀在实验上具有挑战性。在这里,我们探讨这些问题,利用视频光学显微镜研究软球无序二维堵塞堆积中的超均匀性现象。通过实验和模拟相结合的方法,我们表征了颗粒多分散性、图像噪声和有限尺寸效应在超均匀性判定方面可能产生的不利影响,并开发了一种方法,该方法能够从实空间测量中改进对超均匀性的诊断。这种改进的关键是一种简单的堆积重建算法,该算法考虑了颗粒多分散性以最小化自由体积。此外,模拟表明,有限尺寸样本中的超均匀性在实空间中比在倒易空间中能更准确地确定。最后,我们实验中软聚合物球的胶体堆积被证明是有效的超均匀的。