Wang Yuanhong, Su Haowen, Jiang Min, Huang Ying, Qin Yushu, Guo Chang, Wang Zehao, Hu Dongdong, Ji Wei, Fadeev Pavel, Peng Xinhua, Budker Dmitry
CAS Key Laboratory of Microscale Magnetic Resonance and School of Physical Sciences, University of Science and Technology of China, Hefei, Anhui 230026, China.
CAS Center for Excellence in Quantum Information and Quantum Physics, University of Science and Technology of China, Hefei, Anhui 230026, China.
Phys Rev Lett. 2022 Jul 29;129(5):051801. doi: 10.1103/PhysRevLett.129.051801.
Searches for the axion and axionlike particles may hold the key to unlocking some of the deepest puzzles about our Universe, such as dark matter and dark energy. Here, we use the recently demonstrated spin-based amplifier to constrain such hypothetical particles within the well-motivated "axion window" (10 μeV-1 meV) through searching for an exotic dipole-dipole interaction between polarized electron and neutron spins. The key ingredient is the use of hyperpolarized long-lived ^{129}Xe nuclear spins as an amplifier for the pseudomagnetic field generated by the exotic interaction. Using such a spin sensor, we obtain a direct upper bound on the product of coupling constants g_{p}^{e}g_{p}^{n}. The spin-based amplifier technique can be extended to searches for a wide variety of hypothetical particles beyond the standard model.
对轴子和类轴子粒子的搜寻可能是解开有关我们宇宙的一些最深奥谜题(如暗物质和暗能量)的关键。在此,我们利用最近展示的基于自旋的放大器,通过寻找极化电子与中子自旋之间的一种奇特偶极 - 偶极相互作用,在动机充分的“轴子窗口”(10 μeV - 1 meV)内对这类假设粒子进行限制。关键要素是使用超极化的长寿命¹²⁹Xe核自旋作为由这种奇特相互作用产生的伪磁场的放大器。利用这样一个自旋传感器,我们得到了耦合常数gₚᵉgₚⁿ乘积的直接上限。基于自旋的放大器技术可以扩展到对标准模型之外的各种假设粒子的搜寻。