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Kinetic field theory: effects of momentum correlations on the cosmic density-fluctuation power spectrum

机译:动场理论:动量相关性对宇宙密度-波动功率谱的影响

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Download video Transcript View all New J. Phys. video abstracts In earlier work, we have developed a kinetic field theory (KFT) for cosmological structure formation and showed that the nonlinear density-fluctuation power spectrum known from numerical simulations can be reproduced quite well even if particle interactions are taken into account to first order only. Besides approximating gravitational interactions, we had to truncate the initial correlation hierarchy of particle momenta at the second order. Here, we substantially simplify KFT. We show that its central object, the free generating functional, can be factorised, taking the full hierarchy of momentum correlations into account. The factors appearing in the generating functional, which we identify as nonlinearly evolved density-fluctuation power spectra, have a universal form and can thus be tabulated for fast access in perturbation schemes. In this paper, we focus on a complete evaluation of the free generating functional of KFT, not including particle interactions yet. This implies that the nonlinearly evolved power spectra contain a damping term which reflects that structures are being wiped out at late times by free streaming. Once particle interactions will be taken into account, they will compensate this damping. If we suppress this damping in a way suggested by the fluctuation-dissipation relations of KFT, our results show that the complete hierarchy of initial momentum correlations is responsible for a large part of the characteristic nonlinear deformation and the mode transport in the density-fluctuation power spectrum. Without any adjustable parameters, KFT accurately reproduces the scale at which nonlinear evolution sets in. Finally, we further develop perturbation theory based on the factorisation of the generating functional and propose a diagrammatic scheme for the perturbation terms.
机译:下载视频抄本查看全部New J. Phys。视频摘要在较早的工作中,我们已经开发了用于宇宙结构形成的动力学场理论(KFT),并且表明,即使将一阶粒子相互作用考虑在内,也可以很好地再现数值模拟中已知的非线性密度-波动功率谱。只要。除了近似重力相互作用外,我们还必须截断二阶粒子动量的初始相关层次。在这里,我们大大简化了KFT。我们表明,考虑到动量相关性的完整层次,可以分解其中心对象(自由生成的函数)。生成函数中出现的因素(我们将其识别为非线性演化的密度波动功率谱)具有通用形式,因此可以将其列表化,以便在扰动方案中快速访问。在本文中,我们专注于KFT自由生成功能的完整评估,尚不包括粒子相互作用。这意味着非线性演化的功率谱包含一个阻尼项,该阻尼项反映了结构在自由流的后期被清除。一旦考虑了粒子相互作用,它们将补偿这种阻尼。如果我们以KFT的涨落-耗散关系建议的方式抑制这种阻尼,我们的结果表明,初始动量相关性的完整层次构成了特征非线性变形和密度涨落模态运移的很大一部分。光谱。在没有任何可调整参数的情况下,KFT可以准确地再现非线性演化的尺度。最后,我们进一步基于生成函数的因式分解发展微扰理论,并为微扰项提出了图解方案。

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