论文标题
搜索具有光学悬浮传感器的复合暗物质
Search for composite dark matter with optically levitated sensors
论文作者
论文摘要
从搜索一类复合暗物质模型的搜索中报告了结果,这些模型与正常物质有微弱,长期的相互作用。我们通过在几天的时间内监测光学悬浮的纳米图质量的机械运动来搜索因传递暗物质颗粒而产生的冲动。假设这种粒子构成了暗物质的主要组成部分,则此搜索在与$α_n\ leq 1.2 \ times 10^{ - 7} $的中子相互作用上置于上,在95 \%\%的信心对1--10 TEV和中间质量之间的暗物质质量的信心\%\%。由于深色物质的横截面大大增强,可以从纳米图质量($ \ sim 10^{29} $ timers(对于单个中子子来说,这是一个单个中子)的倍数),并且能够检测到$ \ sim $ 200 MEV/c的动量转移的能力,这些结果对某些组成的黑暗物质模型(包括现有搜索)的敏感性提供了敏感性,包括这些搜索的某些类别,包括这些搜索,包括这些搜索,包括kg kg kg。这些技术的扩展可以实现方向敏感的搜索,以搜索一系列以前无法访问的重型暗物质候选者。
Results are reported from a search for a class of composite dark matter models with feeble, long-range interactions with normal matter. We search for impulses arising from passing dark matter particles by monitoring the mechanical motion of an optically levitated nanogram mass over the course of several days. Assuming such particles constitute the dominant component of dark matter, this search places upper limits on their interaction with neutrons of $α_n \leq 1.2 \times 10^{-7}$ at 95\% confidence for dark matter masses between 1--10 TeV and mediator masses $m_ϕ\leq 0.1$ eV. Due to the large enhancement of the cross-section for dark matter to coherently scatter from a nanogram mass ($\sim 10^{29}$ times that for a single neutron) and the ability to detect momentum transfers as small as $\sim$200 MeV/c, these results provide sensitivity to certain classes of composite dark matter models that substantially exceeds existing searches, including those employing kg-scale or ton-scale targets. Extensions of these techniques can enable directionally-sensitive searches for a broad class of previously inaccessible heavy dark matter candidates.