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Elements of QED-NRQED effective field theory. II. Matching of contact interactions

机译:QED-NRQED有效场论的要素。二。匹配联系人互动

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摘要

In 2010 the first extraction of the proton charge radius from muonic hydrogen was found to be 5 standard deviations away from the regular hydrogen value. Eight years later, this proton radius puzzle is still unresolved. One of the most promising avenues to resolve the puzzle is by a muon-proton scattering experiment called MUSE. The typical momenta of the muons in this experiment are of the order of the muon mass. In this energy regime the muons are relativistic but the protons are nonrelativistic. The interaction between them can be described by QED–nonrelativistic QED (NRQED) effective field theory. In a previous paper we have shown how QED-NRQED reproduces Rosenbluth scattering up to 1 / M 2 , where M is the proton mass, and relativistic scattering off a static potential at O ( Z 2 α 2 ) and leading power in M . In this paper we determine the Wilson coefficients of the four-fermion contact interactions at O ( Z 2 α 2 ) and power 1 / M 2 . Surprisingly, we find that the coefficient of the spin-independent interaction vanishes, implying that MUSE will be sensitive mostly to the proton charge radius and not spin-independent two-photon exchange effects.
机译:2010年,首次从离子态氢中提取质子电荷半径与常规氢值相差5个标准差。八年后,这个质子半径难题仍未解决。解决这一难题的最有前途的途径之一是通过称为MUSE的质子质子散射实验。在该实验中,μ子的典型动量约为μ子质量。在这种能量状态下,μ子是相对论的,而质子是非相对论的。它们之间的相互作用可以用QED-非相对论QED(NRQED)有效场理论来描述。在先前的论文中,我们显示了QED-NRQED如何重现高达1 / M 2的Rosenbluth散射,其中M是质子质量,以及相对论性地散射了O(Z 2α2)处的静态势和M中的超前幂。在本文中,我们确定在O(Z 2α2)和幂1 / M 2处四费米子接触相互作用的Wilson系数。出乎意料的是,我们发现自旋无关的相互作用的系数消失了,这意味着MUSE将主要对质子电荷半径敏感,而不受自旋无关的两光子交换效应的影响。

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