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Dynamical spin effects in the holographic light-front wavefunctions of light pseudoscalar mesons

机译:在光伪蒙塞尔的全息浅前波力发生中的动态旋转效应

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摘要

We quantify the importance of dynamical spin effects in the holographic light-front wavefunctions of the pion, kaon, η and η'. Using a universal AdS/QCD scale and constituent quark masses, we find that such effects are maximal in the pion where they lead to an excellent simultaneous description of a wide range of data: the decay constant, charge radius, spacelike EM and transition form factors, as well as, after QCD evolution, both the parton distribution function and the parton distribution amplitude data from Fermilab. These dynamical spin effects lead up to a 30% chance of finding the valence quark and antiquark with aligned spins in the pion. The situation is very different for the kaon, where a simultaneous description of the available data (decay constant, radius and spacelike EM form factor) prefer no dynamical spin effects at all. The situation is less clear for the η and η':while their radiative decay widths data are consistent with dynamical spin effects only in η', the data on their spacelike transition form factors clearly favor maximal dynamical spin effects in both mesons.
机译:我们量化了在磁场,kaon,η和η'的全息光前波力发生器中动态自旋效应的重要性。使用通用广告/ QCD规模和组成夸克群众,我们发现这种效果在磁共振上最大值,在那里它们会导致各种数据的出色的同时描述:衰减恒定,充电半径,空间EM和转换形式因子以及在QCD演进之后,来自Fermilab的Parton分发功能和Parton分布幅度数据。这些动态旋转效应可导致高达30%的机会找到价夸克和古董在田地中的对齐旋转。 KAON的情况非常不同,其中可用数据的同时描述(衰减常数,半径和Spacelike EM Form因子)完全没有动态旋转效果。 η和η'的情况较小:虽然它们的辐射衰减宽度数据仅在η'中与动态旋转效果一致,但是它们的空间转换形式因子上的数据明显地利用两个偏执源的最大动态自旋效应。

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