论文标题

耦合轴向扇区中的非扰动结构及其对直接检测的影响

Nonperturbative structure in coupled axion sectors and implications for direct detection

论文作者

Cyncynates, David, Simon, Olivier, Thompson, Jedidiah O., Weiner, Zachary J.

论文摘要

与附近质量的一对未对准的轴成对可能会产生非线性共振,从而导致轴突暗物质的直接和天体物理特征增强。在许多相关参数空间中,自我互动会导致轴突波动变得不扰动并在早期宇宙中崩溃。我们以$ 3+1 $维模拟的方式研究了这种非扰动结构的观察性后果。至关重要的是,在很大一部分的参数空间中,我们发现非线性动力学可以平衡两个轴的丰度,这比以前预期的比以前预期的要容易得多。我们还通过友好的轴线暗物质计算重力波发射;虽然对于$ 10^{-22} \,\ text {ev} $,轴质量可能无法检测到所产生的随机背景,但宇宙微波背景的极化确实限制了可能的超灯,友好的子组件。最后,我们证明,在强大的非线性期间形成的密集,自我交互 - 构成的欧斯科书由同质轴心背景驱动,从而增强了它们的寿命超出了视野期望。

Pairs of misalignment-produced axions with nearby masses can experience a nonlinear resonance that leads to enhanced direct and astrophysical signatures of axion dark matter. In much of the relevant parameter space, self-interactions cause axion fluctuations to become nonperturbative and to collapse in the early Universe. We investigate the observational consequences of such nonperturbative structure in this "friendly axion" scenario with $3+1$ dimensional simulations. Critically, in a substantial fraction of parameter space we find that nonlinear dynamics work to equilibrate the abundance of the two axions, making it easier than previously expected to experimentally confirm the existence of a resonant pair. We also compute the gravitational wave emission from friendly axion dark matter; while the resulting stochastic background is likely undetectable for axion masses above $10^{-22} \, \text{eV}$, the polarization of the cosmic microwave background does constrain possible hyperlight, friendly subcomponents. Finally, we demonstrate that dense, self-interaction--bound oscillons formed during the period of strong nonlinearity are driven by the homogeneous axion background, enhancing their lifetime beyond the in-vacuum expectation.

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