论文标题

暗物质轴支和谐振光子发射的合并

Merger of Dark Matter Axion Clumps and Resonant Photon Emission

论文作者

Hertzberg, Mark P., Li, Yao, Schiappacasse, Enrico D.

论文摘要

一部分光标度暗物质,尤其是轴,可能会组织成重力结合(恒星),并在今天的银河系中大量存在。因此,确定这种情况是否有新颖的观察性特征是最大的兴趣。工作表明,对于中等大的轴 - 光子耦合,此类团块可以将参数共振进入光子,对于临界质量$ m^{\ star} _c $上方的团块,我们中的一些人正好在参考文献中确定。 [1]。为了获得当今星系中临界质量上方的团块,需要合并。在这项工作中,我们对成对的轴突团进行了完整的3维模拟,并通过标量波的发射来确定合并发生的条件,包括分析正面和非对接碰撞,相位依赖性和相对速度。与文献中的其他作品一致,我们发现合并$ m^{\ star} _ {\ text {fext {final}} \大约0.7(m^{\ star} _1+m^{\ star} _2 _2 _2 m^{\ star} _2 $)。因此,亚临界质量团块有可能合并并变得超临界,因此可以在光子中进行参数共振。我们发现,当今高peccei-quinn量表的今天,预计合并将在星系中进行运动学,尽管碰撞率很小,但统一思想强烈建议合并。尽管由于相对速度的统计波动而导致Peccei-Quinn尺度较低的轴可能发生合并,因为它们的碰撞速率很高。我们估计今天银河系中的碰撞和合并率。我们发现合并会导致地球上的能量通量,这可以是可观的,我们提到了观察性搜索策略。

A portion of light scalar dark matter, especially axions, may organize into gravitationally bound clumps (stars) and be present in large number in the galaxy today. It is therefore of utmost interest to determine if there are novel observational signatures of this scenario. Work has shown that for moderately large axion-photon couplings, such clumps can undergo parametric resonance into photons, for clumps above a critical mass $M^{\star}_c$ determined precisely by some of us in Ref. [1]. In order to obtain a clump above the critical mass in the galaxy today would require mergers. In this work we perform full 3-dimensional simulations of pairs of axion clumps and determine the conditions under which mergers take place through the emission of scalar waves, including analyzing head-on and non-head-on collisions, phase dependence, and relative velocities. Consistent with other work in the literature, we find that the final mass from the merger $M^{\star}_{\text{final}}\approx 0.7(M^{\star}_1+M^{\star}_2)$ is larger than each of the original clump masses (for $M^{\star}_1\sim M^{\star}_2$). Hence, it is possible for sub-critical mass clumps to merge and become super-critical and therefore undergo parametric resonance into photons. We find that mergers are expected to be kinematically allowed in the galaxy today for high Peccei-Quinn scales, which is strongly suggested by unification ideas, although the collision rate is small. While mergers can happen for axions with lower Peccei-Quinn scales due to statistical fluctuations in relative velocities, as they have a high collision rate. We estimate the collision and merger rates within the Milky Way galaxy today. We find that a merger leads to a flux of energy on earth that can be appreciable and we mention observational search strategies.

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