越多越不同多轴向动力学改变拓扑缺陷演化

Junseok Lee, Kai Murai, Fuminobu Takahashi, Wen Yin
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引用次数: 0

摘要

我们研究了由多个佩奇-奎恩(PQ)标量引起的多轴模型中的拓扑缺陷。利用简化的双轴系统,我们揭示了这些缺陷的演化与单轴情形的根本差异。这一发现尤为重要,因为尽管在低能时积分掉较重的轴子会将这些模型还原为有效的单 PQ 标量理论,但拓扑缺陷的实际物理行为与单轴预言有明显不同。与形成传统宇宙弦的单轴模型不同,具有后膨胀或混合初始条件的多轴情景一般会产生由高张力域壁相互连接的弦网络。这导致了严重的宇宙学域壁问题。我们确定了弦壁网络的不稳定性条件,并讨论了其对宇宙学的影响,包括在 QCD 轴子和引力波产生中的应用。我们的发现凸显了多轴动力学会导致拓扑缺陷出现质的不同结果,从而挑战了基于单轴模型的拓扑缺陷宇宙演化的传统图景。
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More is Different: Multi-Axion Dynamics Changes Topological Defect Evolution
We study topological defects in multi-axion models arising from multiple Peccei-Quinn (PQ) scalars. Using a simplified two-axion system, we reveal fundamental differences in the evolution of these defects compared to single-axion scenarios. This finding is particularly significant because, despite the fact that integrating out heavier axions reduces these models to an effective single PQ scalar theory at low energies, the actual physical behavior of topological defects differs markedly from single-axion predictions. Unlike single-axion models where conventional cosmic strings form, multi-axion scenarios with post-inflationary or mixed initial conditions generically produce networks of strings interconnected by high-tension domain walls. This results in a severe cosmological domain wall problem. We determine string-wall network instability conditions and discuss cosmological implications including the application to the QCD axion and gravitational wave generation. Our findings highlight that multi-axion dynamics can lead to qualitatively different outcomes for topological defects, challenging the conventional picture of cosmic evolution of topological defects based on single-axion models.
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