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The pion velocity at chiral restoration and the vector manifestation

机译:手性修复时的介子速度及其载体表现

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摘要

We study the effects of Lorentz non-invariance on the physical pion velocity at the critical temperature T-C in an effective theory of hidden local symmetry (HLS) with the "vector manifestation" fixed point. We match at a "matching scale" Lambda(M) the axial-vector current correlator in the HLS with the one in the operator product expansion for QCD, and present the matching condition to determine the bare pion velocity. We find that the physical pion velocity, which is found to be one at T = T-C when starting from the Lorentz invariant bare HLS, remains close to one with the Lorentz non-invariance, nu(pi) (T-c) = 0.83-0.99. This result is quite similar to the pion velocity in dense matter. (C) 2003 Published by Elsevier B.V. [References: 23]
机译:我们使用“矢量表现”定点的有效隐藏局部对称性(HLS)理论,研究了临界温度T-C下洛伦兹不变性对物理离子速度的影响。我们以“匹配尺度” Lambda(M)匹配HLS中的轴向矢量电流相关器和QCD的乘积乘积中的一个,并提出匹配条件以确定裸离子速度。我们发现,物理介子速度从Lorentz不变裸HLS开始在T = T-C时为1,但在Lorentz不变nu(pi)(T-c)= 0.83-0.99的情况下仍接近于1。该结果与致密物质中的小子速度非常相似。 (C)2003年,Elsevier B.V.出版[参考文献:23]

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