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首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >IN-MEDIUM CHIRAL PERTURBATION THEORY AND PION WEAK DECAY IN THE PRESENCE OF BACKGROUND MATTER
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IN-MEDIUM CHIRAL PERTURBATION THEORY AND PION WEAK DECAY IN THE PRESENCE OF BACKGROUND MATTER

机译:存在背景物质时的中等手性摄动理论和介子弱衰变

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摘要

Two-point functions related to the pion weak decay constant f(pi) are calculated from the generating functional of chiral perturbation theory in the mean field approximation and the heavy-baryon limit. The aim is to demonstrate that Lorentz invariance is violated in the presence of background matter. This fact manifests itself in the splitting of both f(pi) and the pion mass into uncorrelated time- and space-like parts. We emphasize the different in-medium renormalizations of the correlation functions, show the inequivalence between the in-medium values of f(pi) deduced from Walecka-type models, on the one hand, and QCD sum rules, on the other hand, and elaborate on the importance for some nuclear physics observables. (C) 1997 Elsevier Science B.V. [References: 34]
机译:根据平均场近似和重子重子极限中的手性摄动理论的产生函数,计算了与π离子弱衰变常数f(pi)有关的两点函数。目的是证明在存在背景物质的情况下违反了洛伦兹不变性。这个事实在将f(pi)和介子质量分裂为不相关的时间和空间类似部分时表现出来。我们强调了相关函数的不同的中等重整化,一方面表明了从Walecka型模型推导的f(pi)的中等值与另一方面的QCD和规则不相等,并且详细阐述了对某些核物理观测资料的重要性。 (C)1997 Elsevier Science B.V. [参考:34]

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