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Hyperon polarization in relativistic heavy ion collisions and axial U(1) symmetry breaking at high temperature

机译:相对论重离子碰撞中的高速偏振和高温下断裂的轴向U(1)对称性

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摘要

Experiments at the Relativistic Heavy Ion Collider have measured the net polarization of Lambda and (Lambda) over bar hyperons and attributed it to a coupling between their spin and the vorticity of the fluid created in heavy ion collisions, but how the spin comes to equilibrium with vorticity is an open problem. Recently, we found that vorticity fluctuations and helicity flip of strange quarks in quark-gluon plasma through perturbative QCD processes resulted in equilibration times far too long to be relevant. Here, we consider the Nambu-Jona-Lasinio model with the inclusion of the six-quark Kobayashi-Maskawa-'t Hooft interaction which breaks axial U(1). Using instanton inspired models for the temperature dependence of the axial symmetry breaking, we find that constituent strange quarks can reach spin equilibrium at temperatures below about 170 MeV, just before they hadronize to form hyperons.
机译:相对论的重离子撞机的实验已经测量了λ和(λ)上方的净偏振,并将其归因于它们的旋转和在重离子碰撞中产生的流体的涡流之间的耦合,但是旋转如何与平衡 漩涡是一个公开问题。 最近,我们发现通过扰动QCD过程夸克 - 胶质等离子体中奇怪夸克的幽灵波动和螺旋触发导致衡量太长的平衡时间。 在这里,我们考虑Nambu-jona-lasinio模型,包括包含六夸克的Kobayashi-Maskawa-'t徽章交互,该徽章互动轴向u(1)。 使用Instanton激发模型的轴向对称性突破的温度依赖性,我们发现组成奇怪的夸克可以在低于约170 mev的温度下达到旋转平衡,只是在他们退缩以形成超矛盾之前。

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