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Pure Pure sea-quark contributions to the magnetic form factors of Sigma baryons

机译:纯净的海夸克对sigma重子磁性形状因子的贡献

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摘要

We propose the pure sea-quark contributions to the magnetic form factors of Σ baryons, GuΣ− and GdΣ+, as priority observables for the examination of sea-quark contributions to baryon structure, both in present lattice QCD simulations and possible future experimental measurement. GuΣ−, the u-quark contribution to the magnetic form factor of Σ−, and GdΣ+, the d-quark contribution to the magnetic form factor of Σ+, are similar to the strange-quark contribution to the magnetic form factor of the nucleon, but promise to be larger by an order of magnitude. We explore the size of this quantity within chiral effective field theory, including both octet and decuplet intermediate states. The finite range regularization approach is applied to deal with ultraviolet divergences. Drawing on an established connection between quenched and full QCD, this approach makes it possible to predict the sea-quark contribution to the magnetic form factor purely from the meson loop. In the familiar convention where the quark charge is set to unity GuΣ−=GdΣ+. We find a value of −0.38+0.16−0.17 μN, which is about seven times larger than the strange magnetic moment of the nucleon found in the same approach. Including quark charge factors, the u-quark contribution to the Σ− magnetic moment exceeds the strange-quark contribution to the nucleon magnetic moment by a factor of 14.
机译:我们建议在Σ重子,GuΣ-和GdΣ+的磁性形状因子中的纯夸克贡献,作为在当前晶格QCD模拟和可能的未来实验测量中检查夸克对重子结构贡献的优先观察指标。 GuΣ-,u-夸克对Σ-的磁性形状的贡献,GdΣ+,d-夸克对Σ+的磁性形状的贡献,类似于奇夸克对Σ-的磁性形状的贡献。核子,但有望更大一个数量级。我们在手性有效场论中探索了这个数量的大小,包括八位位组和十重位中间态。有限范围正则化方法用于处理紫外线发散。利用淬灭和完全QCD之间已建立的联系,此方法使得可以仅从介子回路预测海夸克对磁性形状因子的贡献。在熟悉的惯例中,夸克电荷设置为单位GuΣ-=GdΣ+。我们发现-0.38 + 0.16-0.17 N的值,是同一方法中发现的核子的奇异磁矩的大约7倍。包括夸克电荷因子,u-夸克对Σ-磁矩的贡献比奇异夸克对核子磁矩的贡献高14倍。

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