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ELECTROMAGNETIC FORM FACTORS OF THE NUCLEON IN THE CHIRAL QUARK SOLITON MODEL

机译:手性夸克孤子模型中核的电磁形态因子

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摘要

In this paper we present the derivation as well as the numerical results for the electromagnetic form factors of the nucleon within the chiral quark soliton model in the semiclassical quantization scheme. The model is based on semibosonized SU(2) Nambu-Jona-Lasinio lagrangian, where the boson fields are treated as classical ones. Other observables, namely the nucleon mean squared radii, the magnetic moments, and the nucleon-Delta splitting are calculated as well. The calculations have been done taking into account the quark sea polarization effects. The final results, including rotational 1/N-c corrections, are compared with the existing experimental data, and they are found to be in a good agreement for the constituent quark mass of about 420 MeV. The only exception is the neutron electric form factor which is overestimated. [References: 29]
机译:在本文中,我们介绍了半经典量化方案中手性夸克孤子模型中核子电磁形状因子的推导以及数值结果。该模型基于半玻色化SU(2)Nambu-Jona-Lasinio lagrangian,玻色子场被视为经典场。还计算了其他可观察到的值,即核子均方半径,磁矩和核子-Delta分裂。计算时已考虑到夸克两极分化的影响。包括旋转1 / N-c校正在内的最终结果与现有实验数据进行了比较,发现它们与约420 MeV的夸克质量非常吻合。唯一的例外是被高估的中子电形状因数。 [参考:29]

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