论文标题

不要越过溪流:来自模糊暗物质的苛性菜

Don't cross the streams: caustics from Fuzzy Dark Matter

论文作者

Dalal, Neal, Bovy, Jo, Hui, Lam, Li, Xinyu

论文摘要

我们研究如何使用来自球状簇的潮汐流来限制被称为“模糊”暗物质(FDM)的超轻暗物质颗粒的质量。 FDM模型的一般特征是在绑定的,病毒的暗物质结构中存在普遍存在的密度波动,在De Broglie波长的尺度上,是由于不断发展的暗物质分布中的波浪干扰引起的。这些随时间变化的波动会干扰恒星的运动,从而导致在我们自己的银河系中冷薄潮流中的潜在可观察到的特征。在模拟银河系大小的系统中模拟FDM波函数的困难,对这种效果的研究受到了阻碍。我们提出了一种简单的方法,可以在几乎静态的电位中发展逼真的波形,该方法应准确地估计这种肉芽作用。我们量化了FDM扰动对潮汐流的影响,并表明,最初,尽管流扰动幅度很小,但它们的功率谱显示出与FDM潜在波动的DE Broglie波长相对应的急剧截止。最终,当流扰动变成非线性时,折叠层质量通常会导致具有普遍行为的密度波动。这消除了溪流密度功率谱中de Broglie波长的签名,但我们表明,通过考虑诸如角动量或动作之类的数量的波动,仍然可以确定该制度中FDM质量的签名。

We study how tidal streams from globular clusters may be used to constrain the mass of ultra-light dark matter particles, called `fuzzy' dark matter (FDM). A general feature of FDM models is the presence of ubiquitous density fluctuations in bound, virialized dark matter structures, on the scale of the de Broglie wavelength, arising from wave interference in the evolving dark matter distribution. These time-varying fluctuations can disturb the motions of stars, leading to potentially observable signatures in cold thin tidal streams in our own Galaxy. The study of this effect has been hindered by the difficulty in simulating the FDM wavefunction in Milky Way-sized systems. We present a simple method to evolve realistic wavefunctions in nearly static potentials, that should provide an accurate estimate of this granulation effect. We quantify the impact of FDM perturbations on tidal streams, and show that initially, while stream perturbations are small in amplitude, their power spectra exhibit a sharp cutoff corresponding to the de Broglie wavelength of the FDM potential fluctuations. Eventually, when stream perturbations become nonlinear, fold caustics generically arise that lead to density fluctuations with universal behavior. This erases the signature of the de Broglie wavelength in the stream density power spectrum, but we show that it will still be possible to determine the FDM mass in this regime, by considering the fluctuations in quantities like angular momenta or actions.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源