论文标题

激发态和核子电荷和形式因素的精确结果

Excited states and precision results for nucleon charges and form factors

论文作者

Gupta, Rajan, Bhattacharya, Tanmoy, Cirigliano, Vincenzo, Hoferichter, Martin, Jang, Yong-Chull, Joo, Balint, Mereghetti, Emanuele, Mondal, Santanu, Park, Sungwoo, Winter, Frank, Yoon, Boram

论文摘要

所有核子相关函数中的信噪比呈指数下降,并且具有相对较小的质量间隙的多哈多激发态的塔的存在使得在基态核核中提取了各种操作员的基质元素,具有挑战性。从理论上讲,允许的正差异状态最小的质量间隙状态是$ n(\ bm p)π( - \ bm p)$,$ n(\ bm 0)π(\ bm 0)π(\ bm 0)π(\ bm 0)$,$ n(\ bm p)π(\ bm p)π(\ bm 0)π(\ bm 0)$,$ n(\ bm 0)\ bm $ n(\ bm 0)国家。先验,这些状态的贡献是在手性扰动理论($χ$ pt)中的一个循环中产生的,但是,在许多情况下,贡献得到了增强。在本次演讲中,我将回顾以下四种情况:相关函数,轴向形式,电和磁性尺寸,$θ$ - 对中子电动偶极矩(NEDM)(NEDM)的贡献以及提取pion-nucleon Sigma项的贡献。与标准分析相比,在分析中包括适当的多哈多状态可能会导致显着不同的结果,而从拟合到2分函数的质量差距则可以带来明显不同。 $nπ$状态的$χ$ PT案例是轴向/伪尺度形式中最明显的,需要满足它们之间的PCAC关系。我们的分析在$χ$ pt的支持下,表明在$θ$ - 学期的计算和Pion-Nucleon Sigma项的计算中具有类似的效果,具有显着的现象学意义。

The exponentially falling signal-to-noise ratio in all nucleon correlation functions, and the presence of towers of multihadron excited states with relatively small mass gaps makes extraction of matrix elements of various operators within the ground state nucleon challenging. Theoretically, the allowed positive parity states with the smallest mass gaps are the $N(\bm p)π(-\bm p)$, $N(\bm 0)π(\bm 0)π(\bm 0)$, $N(\bm p)π(\bm 0)$, $N(\bm 0)π(\bm p),\ \ldots$, states. A priori, the contribution of these states arises at one loop in chiral perturbation theory ($χ$PT), however, in many cases the contributions are enhanced. In this talk, I will review four such cases: the correlation functions from which the axial form factors, electric and magnetic form factors, the $Θ$-term contribution to neutron electric dipole moment (nEDM), and the pion-nucleon sigma term are extracted. Including appropriate multihadron states in the analysis can lead to significantly different results compared to standard analyses with the mass gaps taken from fits to 2-point functions. The $χ$PT case for $N π$ states is the most clear in the axial/pseudoscalar form factors which need to satisfy the PCAC relation between them. Our analyses, supported by $χ$PT, suggests similarly large effects in the calculations of the $Θ$-term and the pion-nucleon sigma term that have significant phenomenological implications.

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