Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Phys Rev Lett. 2011 Jun 3;106(22):225503. doi: 10.1103/PhysRevLett.106.225503. Epub 2011 Jun 1.
We investigate the influence of morphology and size on the vibrational properties of disordered clusters of colloidal particles with attractive interactions. Spectral features of the vibrational modes are found to depend strongly on the average number of nearest neighbors, NN, but only weakly on the number of particles in each glassy cluster. In particular, the median phonon frequency, ω(med), is constant for NN<2 and then grows linearly with NN for NN>2. This behavior parallels concurrent observations about local isostatic structures, which are absent in clusters with NN<2 and then grow linearly in number for NN>2. Thus, cluster vibrational properties appear to be strongly connected to cluster mechanical stability, and the scaling of ω(med) with NN is reminiscent of the jamming transition. Simulations of random networks of springs corroborate observations.
我们研究了胶体颗粒无序簇的形态和大小对其振动特性的影响,这些颗粒之间存在吸引力相互作用。发现振动模式的谱特征强烈依赖于平均最近邻数 NN,但仅略微依赖于每个玻璃状簇中的粒子数。特别是,中值声子频率 ω(med)在 NN<2 时保持常数,然后在 NN>2 时随 NN 线性增长。这种行为与关于局部等静压结构的同时观察结果相似,在 NN<2 时不存在局部等静压结构,然后在 NN>2 时线性增加。因此,簇的振动特性似乎与簇的机械稳定性密切相关,ω(med)与 NN 的标度与阻塞转变相似。弹簧随机网络的模拟证实了这些观察结果。