Yan H, Sun G A, Peng S M, Zhang Y, Fu C, Guo H, Liu B Q
Key Laboratory of Neutron Physics, Institute of Nuclear Physics and Chemistry, CAEP, Mianyang, Sichuan 621900,China.
Institute of Nuclear Physics and Chemistry,CAEP, Mianyang, Sichuan 621900,China.
Phys Rev Lett. 2015 Oct 30;115(18):182001. doi: 10.1103/PhysRevLett.115.182001. Epub 2015 Oct 26.
We have constrained possible new interactions which produce nonrelativistic potentials between polarized neutrons and unpolarized matter proportional to ασ[over →]·v[over →] where σ[over →] is the neutron spin and v[over →] is the relative velocity. We use existing data from laboratory measurements on the very long T_{1} and T_{2} spin relaxation times of polarized ^{3}He gas in glass cells. Using the best available measured T_{2} of polarized ^{3}He gas atoms as the polarized source and the Earth as an unpolarized source, we obtain constraints on two new interactions. We present a new experimental upper bound on possible vector-axial-vector (V_{VA}) type interactions for ranges between 1 and 10^{8} m. In combination with previous results, we set the most stringent experiment limits on g_{V}g_{A} ranging from ~μm to ~10^{8} m. We also report what is to our knowledge the first experimental upper limit on the possible torsion fields induced by the Earth on its surface. Dedicated experiments could further improve these bounds by a factor of ~100. Our method of analysis also makes it possible to probe many velocity dependent interactions which depend on the spins of both neutrons and other particles which have never been searched for before experimentally.
我们已经对可能产生的新相互作用进行了限制,这种相互作用会在极化中子与非极化物质之间产生与ασ[向量]·v[向量]成正比的非相对论势,其中σ[向量]是中子自旋,v[向量]是相对速度。我们使用了实验室对玻璃容器中极化³He气体极长的T₁和T₂自旋弛豫时间进行测量得到的现有数据。以测量得到的极化³He气体原子的最佳可用T₂作为极化源,以地球作为非极化源,我们得到了对两种新相互作用的限制。我们给出了在1至10⁸米范围内可能的矢量 - 轴矢量(V₋VA)型相互作用的新实验上限。结合先前的结果,我们对g₋Vg₋A设定了从μm到10⁸米范围内最严格的实验限制。我们还报告了据我们所知地球在其表面可能诱导的挠场的首个实验上限。专门的实验可以将这些限制进一步提高约100倍。我们的分析方法还使得有可能探测许多依赖于速度的相互作用,这些相互作用取决于中子和其他粒子的自旋,而此前从未进行过实验搜索。