论文标题
在超音速星际湍流中,发电机平均场效应的空间和时间非本地性
On the spatial and temporal non-locality of dynamo mean-field effects in supersonic interstellar turbulence
论文作者
论文摘要
银河系和附近磁盘星系的星际介质具有微果棒强度的大规模相干磁场,这可以通过平均场发电机的作用来解释。与以前的工作一样,我们旨在量化在现实的直接磁性水力动力学模拟中是自愿出现的,但是我们将我们的方法推广到非局部(非恒定)封闭关系的情况下,这是由空间中的A卷积积分(时间)所描述的。为此,我们利用了超新星调节的湍流多相星际介质的综合模拟框架。通过在空间(时间)调制的平均场上引入,我们将先前使用的测试场方法扩展到光谱领域 - 提供卷积内核的傅立叶表示。发电机平均场系数的最终光谱我们获得了广泛匹配的期望,并允许严格限制银河发电机中的规模分离程度。对于磁磁抽水术语,发现了一个令人惊讶的结果,在较小的尺度上时,幅度会增加。我们的结果归功于迄今为止在银河系中的发电机平均场效应的最全面描述。调查相关的参数空间和淬火行为,这最终将使无假设的子网格处方开发,以进行原本未解决的全局星系模拟。
The interstellar medium of the Milky Way and nearby disk galaxies harbours large-scale coherent magnetic fields of Microgauss strength, that can be explained via the action of a mean-field dynamo. As in our previous work, we aim to quantify dynamo effects that are self-consistently emerging in realistic direct magnetohydrodynamic simulations, but we generalise our approach to the case of a non-local (non-instantaneous) closure relation, described by a convolution integral in space (time). To this end, we leverage our comprehensive simulation framework for the supernova-regulated turbulent multi-phase interstellar medium. By introducing spatially (temporally) modulated mean fields, we extend the previously used test-field method to the spectral realm -- providing the Fourier representation of the convolution kernels. The resulting spectra of the dynamo mean-field coefficients that we obtain broadly match expectations and allow to rigorously constrain the degree of scale separation in the Galactic dynamo. A surprising result is found for the diamagnetic pumping term, which increases in amplitude when going to smaller scales. Our results amount to the most comprehensive description of dynamo mean-field effects in the Galactic context to date. Surveying the relevant parameter space and quenching behaviour, this will ultimately enable the development of assumption-free sub-grid prescriptions for otherwise unresolved global galaxy simulations.