Max-Planck-Institut für Kernphysik, Heidelberg, Germany.
Phys Rev Lett. 2013 Jan 18;110(3):033003. doi: 10.1103/PhysRevLett.110.033003. Epub 2013 Jan 15.
The g factor of lithiumlike silicon (28)Si(11+) has been measured in a triple-Penning trap with a relative uncertainty of 1.1×10(-9) to be g(exp)=2.000 889 889 9(21). The theoretical prediction for this value was calculated to be g(th)=2.000 889 909(51) improving the accuracy to 2.5×10(-8) due to the first rigorous evaluation of the two-photon exchange correction. The measured value is in excellent agreement with the theoretical prediction and yields the most stringent test of bound-state QED for the g factor of the 1s(2)2s state and the relativistic many-electron calculations in a magnetic field.
硅(28)的类锂离子(11+)g 因子已在三重彭宁阱中测量,相对不确定度为 1.1×10(-9),结果为 g(exp)=2.000 889 889 9(21)。该值的理论预测计算为 g(th)=2.000 889 909(51),由于首次对双光子交换修正进行了严格评估,精度提高到 2.5×10(-8)。测量值与理论预测非常吻合,对 1s(2)2s 态的 g 因子以及磁场中的相对论多电子计算的束缚态 QED 进行了最严格的检验。