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首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >Resummed Kinetic Field Theory: using Mesoscopic Particle Hydrodynamics to describe baryonic matter in a cosmological framework
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Resummed Kinetic Field Theory: using Mesoscopic Particle Hydrodynamics to describe baryonic matter in a cosmological framework

机译:被追求的动力学理论:使用介观粒子流体动力学描述宇宙框架中的焦态物

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摘要

We present a new analytical description of baryonic matter in a cosmological framework, using the formalism of "Kinetic Field Theory" (KFT) - a statistical field theory approach to structure formation based on the dynamics of classical particles. So far, only the purely gravitational dynamics of dark matter had been considered in KFT, but an accurate description of cosmic structure formation requires to also take into account the baryonic gas dynamics. In this paper, we propose to achieve this by incorporating an effective mesoscopic particle model of hydrodynamics into the recently developed framework of Resummed KFT. Our main result is the baryonic density contrast power spectrum computed to lowest perturbative order, assuming a simplified isothermal fluid model. Compared to the spectrum of dark matter, the baryonic spectrum shows a suppression of power as well as an oscillatory behaviour associated with sound waves on scales smaller than the Jeans length. We further compare our result to the linear spectrum of an isothermal fluid obtained from Eulerian perturbation theory (EPT), finding good quantitative agreement within the approximations we made in the EPT calculation. A subsequent paper will resolve the problem of coupling both dark and baryonic matter, to gain a full model of cosmic matter. Applying the mesoscopic particle approach to more general ideal or viscous fluids will also be subject of upcoming work.
机译:我们使用“动力场理论”(KFT)(KFT) - 一种基于古典粒子的动态的结构形成的统计场理论方法,展示了宇宙学框架中的新分析物质描述。到目前为止,只有在KFT中才考虑了纯粹的暗物质的重力动态,但宇宙结构形成的准确描述需要考虑到齐芳气体动态。在本文中,我们建议通过将流体动力学的有效介于介于介于介绍粒子模型纳入最近开发的KFT的框架来实现这一点。假设简化等温流体模型,我们主要结果是计算到最低扰动顺序的辐射密度对比度功率谱。与暗物质的光谱相比,缩放光谱显示出功率的抑制以及与比牛仔裤长度小的刻度上的声波相关联的振荡行为。我们进一步比较了我们的结果,从欧拉扰动理论(EPT)获得的等温流体的线性谱,在我们在EPT计算中的近似下找到良好的定量协议。随后的纸张将解决耦合黑暗和辐射物质的问题,以获得宇宙物质的完整模型。将介绍颗粒方法应用于更通用的理想或粘性流体也将受到即将到来的工作的主题。

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