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非遍历随机过程的涨落

Fluctuations of non-ergodic stochastic processes.

作者信息

George G, Klochko L, Semenov A N, Baschnagel J, Wittmer J P

机构信息

Institut Charles Sadron, Université de Strasbourg & CNRS, 23 rue du Loess, 67034, Strasbourg Cedex, France.

出版信息

Eur Phys J E Soft Matter. 2021 Apr 18;44(4):54. doi: 10.1140/epje/s10189-021-00070-5.

Abstract

We investigate the standard deviation [Formula: see text] of the variance [Formula: see text] of time series [Formula: see text] measured over a finite sampling time [Formula: see text] focusing on non-ergodic systems where independent "configurations" c get trapped in meta-basins of a generalized phase space. It is thus relevant in which order averages over the configurations c and over time series k of a configuration c are performed. Three variances of [Formula: see text] must be distinguished: the total variance [Formula: see text] and its contributions [Formula: see text], the typical internal variance within the meta-basins, and [Formula: see text], characterizing the dispersion between the different basins. We discuss simplifications for physical systems where the stochastic variable x(t) is due to a density field averaged over a large system volume V. The relations are illustrated for the shear-stress fluctuations in quenched elastic networks and low-temperature glasses formed by polydisperse particles and free-standing polymer films. The different statistics of [Formula: see text] and [Formula: see text] are manifested by their different system-size dependences.

摘要

我们研究了在有限采样时间[公式:见正文]内测量的时间序列[公式:见正文]的方差[公式:见正文]的标准差[公式:见正文],重点关注非遍历系统,在该系统中,独立的“构型”c被困在广义相空间的亚盆地中。因此,对构型c和构型c的时间序列k进行平均的顺序是相关的。必须区分[公式:见正文]的三个方差:总方差[公式:见正文]及其贡献[公式:见正文]、亚盆地内的典型内部方差,以及[公式:见正文],它表征了不同盆地之间的离散程度。我们讨论了物理系统的简化情况,其中随机变量x(t)是由于在大系统体积V上平均的密度场引起的。通过淬火弹性网络中的剪应力波动以及由多分散颗粒和自支撑聚合物薄膜形成的低温玻璃来说明这些关系。[公式:见正文]和[公式:见正文]的不同统计特性通过它们不同的系统尺寸依赖性表现出来。

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