论文标题

分子云的丝状结构的统计模型 - 修饰的乘法随机级联模型及其多重分子性质

Statistical model for filamentary structures of molecular clouds -- The modified multiplicative random cascade model and its multifractal nature

论文作者

Robitaille, Jean-François, Abdeldayem, Abdelhalim, Joncour, Isabelle, Moraux, Estelle, Motte, Frédérique, Lesaffre, Pierre, Khalil, André

论文摘要

我们提出了一个新的统计模型,该模型可以重现分子云无处不在的丝状结构的层次结构。该模型基于乘法随机级联反应,该级联反应旨在复制发达的湍流中间歇性的多胎面性质。我们提出了乘法过程的修改版本,其中空间波动随鳞片的函数而产生,并通过小部分布朗运动实现的小波变换产生。这种简单的方法自然会产生对数正态分布函数和分层相干结构。尽管这些连贯的结构与平稳的背景有高度对比的方面,但它们的傅立叶功率谱可以由单个功率定律安装。正如先前使用多尺度非高斯分割(MNGSEG)技术的作品中报道的那样,事实证明,单个功率定律的拟合反映了傅立叶功率谱无法检测到跨动力范围这些结构的渐进性非高斯贡献。讨论了这些相干结构的固定性,并提出了MNGSEG技术的扩展,以计算与它们相关的多型谱。使用定向小波,我们表明可以轻松地产生丝状结构,而不会改变功率谱的一般形状。随机乘法序列的累积效应成功地产生了类似于与星形区域相似的丝状结构的一般方面。丝状结构是通过不同空间波长的大量随机相线性波的乘积形成的。从动态上讲,这种效果可能与星际介质中发生的压缩过程的收集有关。

We propose a new statistical model that can reproduce the hierarchical nature of the ubiquitous filamentary structures of molecular clouds. This model is based on the multiplicative random cascade, which is designed to replicate the multifractal nature of intermittency in developed turbulence. We present a modified version of the multiplicative process where the spatial fluctuations as a function of scales are produced with the wavelet transforms of a fractional Brownian motion realisation. This simple approach produces naturally a log-normal distribution function and hierarchical coherent structures. Despite the highly contrasted aspect of these coherent structures against a smoother background, their Fourier power spectrum can be fitted by a single power law. As reported in previous works using the multiscale non-Gaussian segmentation (MnGSeg) technique, it is proven that the fit of a single power law reflects the inability of the Fourier power spectrum to detect the progressive non-Gaussian contributions that are at the origin of these structures across the inertial range of the power spectrum. The mutifractal nature of these coherent structures is discussed, and an extension of the MnGSeg technique is proposed to calculate the multifractal spectrum that is associated with them. Using directional wavelets, we show that filamentary structures can easily be produced without changing the general shape of the power spectrum. The cumulative effect of random multiplicative sequences succeeds in producing the general aspect of filamentary structures similar to those associated with star-forming regions. The filamentary structures are formed through the product of a large number of random-phase linear waves at different spatial wavelengths. Dynamically, this effect might be associated with the collection of compressive processes that occur in the interstellar medium.

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