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DYNAMICAL FRAGMENTATION OF FLUX TUBES IN THE FRIEDBERG-LEE MODEL

机译:弗里德伯格-李模型中的助焊剂管动态破碎

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摘要

We present two novel dynamical features of flux tubes in the Friedberg-Lee model. First the fusion of two (anti-)parallel flux tubes, where we extract a string-string interaction potential which has a qualitative similarity to the nucleon-nucleon potential in the Friedberg-Lee model obtained by Koepf et al. Furthermore we show the dynamical breakup of flux tubes via q (q) over bar-particle production and the disintegration into mesons. We find, as a shortcoming of the present realization of the model, that the full dynamical transport approach presented in a previous publication fails to provide the disintegration mechanism in the semiclassical limit. Therefore, in addition, we present here a molecular dynamical approach for the motion of the quarks and show, as a first application, the space-time development of the quarks and their mean-fields for Lund-type string fragmentation processes. (C) 1997 Elsevier Science B.V. [References: 36]
机译:我们介绍了Friedberg-Lee模型中通量管的两个新颖的动力学特征。首先,两个(反)平行通量管的融合,在这里我们提取出一个字符串相互作用的电位,该电位与由Koepf等人获得的Friedberg-Lee模型中的核子-核子电位具有定性相似性。此外,我们还显示了通过q(q)的通量管在棒状粒子产生过程中的动态破裂以及分解为介子的过程。我们发现,由于该模型的当前实现的缺点,在先前出版物中提出的全动力传输方法未能提供半经典极限中的崩解机制。因此,此外,我们在此介绍一种用于夸克运动的分子动力学方法,并作为第一个应用程序展示了夸克的时空发展及其隆德型弦碎裂过程的均值场。 (C)1997 Elsevier Science B.V. [参考:36]

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