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首页> 外文期刊>Progress of Theoretical Physics >Color superconductivity in the Schwinger-Dyson approach - Strange quark mass and the color-flavor unlocking line
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Color superconductivity in the Schwinger-Dyson approach - Strange quark mass and the color-flavor unlocking line

机译:Schwinger-Dyson方法中的颜色超导-奇怪的夸克质量和颜色风味解锁线

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Phase structure and phase transitions in dense QCD are studied using the Schwinger-Dyson (SD) method in the improved ladder approximation. We construct the Cornwall-Jackiw-Tomboulis (CJT) effective potentials at finite temperature for two types of pairing ansatz, namely the color-flavor locking (CFL) state and the two-flavor superconducting (2SC) state. Strong coupling effects at low densities, such as the off-Fermi surface and the antiquark contribution to the pairing gap due to the large effective coupling, cause the gap, critical temperature and their ratio to deviate from the weak coupling values. Nevertheless, the ratio of the physical quantity for the CFL state and that for the 2SC state does not differ so much from the weak coupling value, as long as the pairing interaction is taken to be the same for both cases. As a consequence, the CFL state always dominates the 2SC state and the critical temperatures of the transitions to the quark-gluon plasma (QGP) phase from both states coincide in the chiral limit. The energy gain in the CFL state relative to the 2SC state becomes smaller as the critical line dividing (mu, T) plane into the QGP and CFL phases is approached, and thus small perturbations can lift the degeneracy of these critical lines. As one of the perturbations, the effect of the strange quark mass m(s) on the quark-pairing is examined. In particular, using a simple kinematical criterion, we discuss the behavior of the 'color-flavor unlocking line', on which the CFL phase turns into the 2SC phase, through the variation of m(s). [References: 64]
机译:使用改进的梯形近似,使用Schwinger-Dyson(SD)方法研究了密集QCD中的相结构和相变。我们针对两种类型的配对ansatz,即色味锁定(CFL)状态和二味超导(2SC)状态,在有限温度下构造了Cornwall-Jackiw-Tomboulis(CJT)有效电势。在低密度下的强耦合效应(例如费米外表面和反夸克由于有效耦合较大而对配对间隙的贡献)导致间隙,临界温度及其比率偏离弱耦合值。然而,只要使两种情况下的配对相互作用相同,CFL状态和2SC状态的物理量之比与弱耦合值相差不大。结果,CFL状态始终主导2SC状态,并且从这两个状态到夸克-胶子等离子体(QGP)相的转变的临界温度在手性极限内重合。当接近将(mu,T)平面划分为QGP和CFL相的临界线时,相对于2SC状态,CFL状态下的能量增益变小,因此较小的扰动可以提升这些临界线的简并性。作为扰动之一,研究了奇夸克质量m(s)对夸克配对的影响。特别是,使用简单的运动学准则,我们讨论了“颜色风味解锁线”的行为,在该行为上,CFL相位通过m(s)的变化变为2SC相位。 [参考:64]

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