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Expanding color flux tubes and instabilities

机译:扩大色通量管和不稳定性

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摘要

We present an analytic study of the physics of the glasma which is a strong classical gluon field created at early stage of high-energy heavy-ion collisions. Our analysis is based on the picture that the glasma just after the collision is made of color electric and magnetic flux tubes extending in the longitudinal direction with their diameters of the order of I/Q(s) (Q(s) is the saturation scale of the colliding nuclei). We find that both the electric and magnetic flux tubes expand outwards and the field strength inside the flux tube decays rapidly in time. Next we investigate whether there exist instabilities against small rapidity-dependent perturbations for a fixed color configuration. We find that the magnetic background field exhibits an instability induced by the fluctuations in the lowest Landau level, and it grows exponentially in the time scale of I/Q(s). For the electric background field we find no apparent instability while the possible relation to the Schwinger mechanism for particle pair creations is suggested.
机译:我们对玻璃物理学进行了分析研究,这是在高能重离子碰撞的早期阶段创建的强古典胶子场。我们的分析是基于这样的图片,即碰撞后的玻璃管是由沿纵向延伸的,直径为I / Q(s)的彩色电和磁通管组成的(Q(s)是饱和度原子核的碰撞)。我们发现,电磁通量管都向外膨胀,并且通量管内的场强随时间迅速衰减。接下来,我们研究对于固定的颜色配置,是否存在针对小的与速度无关的扰动的不稳定性。我们发现,磁场的最低磁场水平波动引起的背景磁场表现出不稳定性,并且在I / Q(s)的时间尺度上呈指数增长。对于电背景场,我们发现没有明显的不稳定性,同时提出了与Schwinger机制对建立粒子对的可能关系。

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