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Dilepton production from a viscous QGP

机译:粘性QGP生产Dilepton

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摘要

This work calculates the first correction to the leading order q (q) over bar dilepton production rates due to shear viscosity in an expanding gas. The modified rates are integrated over the space-time history of a viscous hydrodynamic simulation of RHIC collisions. The net result is a hardening of q perpendicular to spectrum with the magnitude of the correction increasing with invariant mass. We argue that a thermal description is reliable for invariant masses less than M-max approximate to (2 tau T-0(0)2/(eta/s). For reasonable values of the shear viscosity and thermalization time M-max approximate to 4.5 GeV. Finally, the early emission from a viscous medium is compared to emission from a longitudinally free streaming plasma. Qualitative differences in q perpendicular to spectrum are seen which could be used to extract information on the thermalization time, viscosity to entropy ratio and possibly the thermalization mechanism in heavy-ion collisions. Published by Elsevier B.V.
机译:由于在膨胀气体中的剪切粘度,这项工作计算出了在棒形轻子产量上对前导阶q(q)的第一次校正。修改后的速率在RHIC碰撞的粘性流体动力学模拟的时空历史中进行积分。最终结果是垂直于光谱的q硬化,且校正量随质量不变而增加。我们认为,对于小于(-2 tau T-0(0)2 /(eta / s)的M-max的不变质量,热描述是可靠的。对于合理的剪切粘度和热化时间,M-max近似为4.5 GeV。最后,将粘性介质的早期发射与纵向自由流动的等离子体的发射进行比较,可以看到q垂直于光谱的质性差异,可用于提取热化时间,粘度与熵比以及可能的信息。重离子碰撞中的热化机理。Elsevier BV发布

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