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首页> 外文期刊>Astronomy and astrophysics >The RWST, a comprehensive statistical description of the non-Gaussian structures in the ISM
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The RWST, a comprehensive statistical description of the non-Gaussian structures in the ISM

机译:RWST,对ISM中非高斯结构的全面统计描述

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The interstellar medium (ISM) is a complex nonlinear system governed by the interplay between gravity and magneto-hydrodynamics, as well as radiative, thermodynamical, and chemical processes. Our understanding of it mostly progresses through observations and numerical simulations, and a quantitative comparison between these two approaches requires a generic and comprehensive statistical description of the emerging structures. The goal of this paper is to build such a description, with the purpose of permitting an efficient comparison that is independent of any specific prior or model. We started from the wavelet scattering transform (WST), a low-variance statistical description of non-Gaussian processes, which was developed in data science and encodes long-range interactions through a hierarchical multiscale approach based on the wavelet transform. We performed a reduction of the WST through a fit of its angular dependencies. This allowed us to gather most of the information it contains into a few components whose physical meanings are identified and describe for instance isotropic and anisotropic behaviours. The result of this paper is the reduced wavelet scattering transform (RWST), a statistical description with a small number of coefficients that characterizes complex structures arising from nonlinear phenomena, in particular interstellar magnetohydrodynamical (MHD) turbulence, independently of any specific priors. The RWST coefficients encode moments of order up to four, have reduced variances, and quantify the couplings between scales. To show the efficiency and generality of this description, we applied it successfully to the following three kinds of processes that are a priori very different: fractional Brownian motions, MHD simulations, and Herschel observations of the dust thermal continuum in a molecular cloud. With fewer than 100 RWST coefficients when probing six scales and eight angles on 256 by 256 maps, we were able to perform quantitative comparisons, infer relevant physical properties, and produce realistic synthetic fields.
机译:星际介质(ISM)是一个复杂的非线性系统,受重力和磁流体动力学以及辐射,热力学和化学过程之间的相互作用所控制。我们对它的理解主要是通过观察和数值模拟来进行的,而这两种方法之间的定量比较需要对新兴结构进行一般和全面的统计描述。本文的目的是建立这样一个描述,目的是允许进行独立于任何特定先验或模型的有效比较。我们从小波散射变换(WST)开始,这是一种非高斯过程的低方差统计描述,它是在数据科学中开发的,并通过基于小波变换的分层多尺度方法对远程交互进行编码。我们通过拟合角度依赖性来减少WST。这使我们能够将其中包含的大多数信息收集到几个组件中,这些组件的物理含义已被识别并描述了各向同性和各向异性行为。本文的结果是简化的小波散射变换(RWST),它是具有少量系数的统计描述,它描述了由非线性现象(尤其是星际磁流体动力学(MHD)湍流)引起的复杂结构,而与任何特定先验无关。 RWST系数最多可以编码四个阶次的矩,具有减小的方差,并且可以量化刻度之间的耦合。为了显示此描述的效率和一般性,我们成功地将其应用于以下三种先验条件非常不同的过程:分数布朗运动,MHD模拟以及分子云中尘埃热连续体的Herschel观测。在256 x 256的地图上探测六个比例和八个角度时,使用少于100个RWST系数,我们能够进行定量比较,推断相关的物理性质并产生逼真的合成场。

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