Wu Diguang, Liang Hang, Jiao Man, Cai Yi-Fu, Duan Chang-Kui, Wang Ya, Rong Xing, Du Jiangfeng
CAS Key Laboratory of Microscale Magnetic Resonance and School of Physical Sciences, University of Science and Technology of China, Hefei 230026, China.
CAS Center for Excellence in Quantum Information and Quantum Physics, University of Science and Technology of China, Hefei 230026, China.
Phys Rev Lett. 2023 Aug 18;131(7):071801. doi: 10.1103/PhysRevLett.131.071801.
Searching for exotic interactions provides a path for exploring new particles beyond the standard model. Here, we used an ensemble-NV-diamond magnetometer to search for an exotic spin- and velocity-dependent interaction between polarized electron spins and unpolarized nucleons at the micrometer scale. A thin layer of nitrogen-vacancy electronic spin ensemble in diamond is utilized as both the solid-state spin quantum sensor and the polarized electron source, and a vibrating lead sphere serves as the moving unpolarized nucleon source. The exotic interaction is searched by detecting the possible effective magnetic field induced by the moving unpolarized nucleon source using the ensemble-NV-diamond magnetometer. Our result establishes new bounds for the coupling parameter f_{⊥} within the force range from 5 to 400 μm. The upper limit of the coupling parameter at 100 μm is |f_{⊥}|≤1.1×10^{-11}, which is 3 orders of magnitude more stringent than the previous constraint. This result shows that NV ensemble can be a promising platform to search for hypothetical particles beyond the standard model.
寻找奇异相互作用为探索超出标准模型的新粒子提供了一条途径。在此,我们使用了一个集成NV金刚石磁力计,在微米尺度上寻找极化电子自旋与非极化核子之间的一种奇异的自旋和速度相关相互作用。金刚石中一层薄的氮空位电子自旋系综既用作固态自旋量子传感器,又用作极化电子源,而一个振动的铅球用作移动的非极化核子源。通过使用集成NV金刚石磁力计检测由移动的非极化核子源诱导的可能的有效磁场来寻找奇异相互作用。我们的结果在5至400μm的力范围内为耦合参数f⊥建立了新的界限。耦合参数在100μm处的上限为|f⊥|≤1.1×10−11,比先前的约束严格3个数量级。这一结果表明,NV系综可以成为寻找超出标准模型的假设粒子的一个有前景的平台。