Roberts B M, Stadnik Y V, Dzuba V A, Flambaum V V, Leefer N, Budker D
School of Physics, University of New South Wales, Sydney 2052, Australia.
School of Physics, University of New South Wales, Sydney 2052, Australia and New Zealand Institute for Advanced Study, Massey University, Auckland 0745, New Zealand.
Phys Rev Lett. 2014 Aug 22;113(8):081601. doi: 10.1103/PhysRevLett.113.081601. Epub 2014 Aug 19.
We propose methods for extracting limits on the strength of P-odd interactions of pseudoscalar and pseudovector cosmic fields with electrons, protons, and neutrons, by exploiting the static and dynamic parity-nonconserving amplitudes and electric dipole moments they induce in atoms. Candidates for such fields are dark matter (including axions) and dark energy, as well as several more exotic sources described by Lorentz-violating standard model extensions. Atomic calculations are performed for H, Li, Na, K, Rb, Cs, Ba(+), Tl, Dy, Fr, and Ra(+). From these calculations and existing measurements in Dy, Cs, and Tl, we constrain the interaction strengths of the parity-violating static pseudovector cosmic field to be 7 × 10(-15) GeV with an electron, and 3 × 10(-8) GeV with a proton.
我们提出了一些方法,通过利用伪标量和伪矢量宇宙场与电子、质子和中子的P-奇相互作用在原子中诱导的静态和动态宇称不守恒振幅以及电偶极矩,来提取这些相互作用强度的限制。这类场的候选者包括暗物质(包括轴子)和暗能量,以及由违反洛伦兹对称性的标准模型扩展所描述的其他几种奇特来源。我们对氢、锂、钠、钾、铷、铯、钡离子、铊、镝、钫和镭离子进行了原子计算。根据这些计算以及镝、铯和铊的现有测量结果,我们将宇称违反静态伪矢量宇宙场与电子的相互作用强度限制为7×10^(-15) GeV,与质子的相互作用强度限制为3×10^(-8) GeV。