论文标题

在不同银河环境中的宇宙射线运输

Cosmic-Ray Transport in Varying Galactic Environments

论文作者

Armillotta, Lucia, Ostriker, Eve C., Jiang, Yan-Fei

论文摘要

我们研究了多相星际培养基环境中典型条件的多相星际培养基环境中,温和的宇宙射线(CRS)的传播。我们采用了在Armillotta+21中开发的技术,用于后处理三种高分辨率老虎磁流体动力学模拟,对恒星形成银河系磁盘进行了局部斑块。这三个模拟一起涵盖了广泛的气体表面密度,重力电势和恒星形成速率(SFR)。我们的Cr传播处方包括背景气体对流的影响,沿局部离子Alfvén速度以磁场流式传输,以及相对于Alfvén波的扩散,其扩散系数是由流动驱动的Alfvén波激励和受到局部气体介导的流动驱动的AlfVén波激励和抑制作用之间的扩散系数。我们发现,在较高SFR的环境中,组合的运输过程更有效。这些环境的特征是高速热流(由簇状的超新星创建),该流出迅速从银河平面上远离CR。结果,随着SFR的增加,平面CR压力与中平面气体压力的比率降低。我们还使用后处理的模拟来预测CRS的潜在动态影响。平面中平面附近的相对平坦的CR压力曲线认为,它们不会为大多数ISM质量提供重大支持。但是,CR压力梯度大于平面外区域(|> 0.5 kpc)中的其他压力梯度,这表明CRS可能会影响银河喷泉和/或风的动力学。这种影响的程度有望在SFR较低的环境中增加。

We study the propagation of mildly-relativistic cosmic rays (CRs) in multiphase interstellar medium environments with conditions typical of nearby disk galaxies. We employ the techniques developed in Armillotta+21 to post-process three high-resolution TIGRESS magnetohydrodynamic simulations modeling local patches of star-forming galactic disks. Together, the three simulations cover a wide range of gas surface density, gravitational potential, and star formation rate (SFR). Our prescription for CR propagation includes the effects of advection by the background gas, streaming along the magnetic field at the local ion Alfvén speed, and diffusion relative to the Alfvén waves, with the diffusion coefficient set by the balance between streaming-driven Alfvén wave excitation and damping mediated by local gas properties. We find that the combined transport processes are more effective in environments with higher SFR. These environments are characterized by higher-velocity hot outflows (created by clustered supernovae) that rapidly advect CRs away from the galactic plane. As a consequence, the ratio of midplane CR pressure to midplane gas pressures decreases with increasing SFR. We also use the post-processed simulations to make predictions regarding potential dynamical impacts of CRs. The relatively flat CR pressure profiles near the midplane argue that they would not provide significant support against gravity for most of the ISM mass. However, the CR pressure gradients are larger than the other pressure gradients in the extra-planar region (|z|>0.5 kpc), suggesting that CRs may affect the dynamics of galactic fountains and/or winds. The degree of this impact is expected to increase in environments with lower SFR.

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