论文标题

对抗蛋白酶与轴突状暗物质相互作用的直接限制

Direct limits on the interaction of antiprotons with axion-like dark matter

论文作者

Smorra, C., Stadnik, Y. V., Blessing, P. E., Bohman, M., Borchert, M. J., Devlin, J. A., Erlewein, S., Harrington, J. A., Higuchi, T., Mooser, A., Schneider, G., Wiesinger, M., Wursten, E., Blaum, K., Matsuda, Y., Ospelkaus, C., Quint, W., Walz, J., Yamazaki, Y., Budker, D., Ulmer, S.

论文摘要

天体物理学观察结果表明,宇宙中的暗物质大约是普通的重型物质的五倍,由于暗能量,宇宙的能量含量更大。到目前为止,这些深色组件的微观特性仍然笼罩在神秘之中。此外,由于粒子物理学的标准模型缺乏对物质而不是反物质的占主导地位的任何一致的解释,因此我们宇宙中的百分之五的普通物质也尚未得到理解。受现代物理学的这些核心问题的启发,我们在这里直接搜索反物质与暗物质的相互作用,并将直接限制在超光轴敏感的粒子的相互作用上 - $ - $ $ $ - $ $的候选人$ - $ - $ - $和抗蛋白酶。如果与质子相比,抗抗原子与这些暗物质颗粒的耦合更强,则这种CPT-ODD耦合可以在暗物质与宇宙中的Baryon不对称性之间提供联系。我们分析了在频域中用单个抗蛋白子[Smorra等人,Nature 550,371(2017)]中单个抗蛋白子获取的自旋纹额谐振数据,以搜索具有由底层粒子质量控制的特征频率的超光轴的旋转效果。我们的分析将轴轴 - 抗晶体的交互参数$ f_a/c _ {\ overline {p}} $限制为质量大于$ 0.1 $至$ 0.6 $ GEV的值,从$ 2 \ times 10^{ - 23} $ $ 4数量级。此外,我们对非最小标准模型扩展的六个组合限制了六个组合。

Astrophysical observations indicate that there is roughly five times more dark matter in the Universe than ordinary baryonic matter, with an even larger amount of the Universe's energy content due to dark energy. So far, the microscopic properties of these dark components have remained shrouded in mystery. In addition, even the five percent of ordinary matter in our Universe has yet to be understood, since the Standard Model of particle physics lacks any consistent explanation for the predominance of matter over antimatter. Inspired by these central problems of modern physics, we present here a direct search for interactions of antimatter with dark matter, and place direct constraints on the interaction of ultra-light axion-like particles $-$ one of the dark-matter candidates $-$ and antiprotons. If antiprotons exhibit a stronger coupling to these dark-matter particles than protons, such a CPT-odd coupling could provide a link between dark matter and the baryon asymmetry in the Universe. We analyse spin-flip resonance data acquired with a single antiproton in a Penning trap [Smorra et al., Nature 550, 371 (2017)] in the frequency domain to search for spin-precession effects from ultra-light axions with a characteristic frequency governed by the mass of the underlying particle. Our analysis constrains the axion-antiproton interaction parameter $f_a/C_{\overline{p}}$ to values greater than $0.1$ to $0.6$ GeV in the mass range from $2 \times 10^{-23}$ to $4 \times 10^{-17}\,$eV/$c^2$, improving over astrophysical antiproton bounds by up to five orders of magnitude. In addition, we derive limits on six combinations of previously unconstrained Lorentz-violating and CPT-violating terms of the non-minimal Standard Model Extension.

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