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Freeze-out dynamics via charged kaon femtoscopy in √sNN=200 GeV central Au + Au collisions

机译:在√sNN= 200 GeV中心Au + Au碰撞中通过带电的钾离子飞雪冻结行为

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摘要

We present measurements of three-dimensional correlation functions of like-sign, low-transverse-momentum kaon pairs from √sNN=200 GeV Au+Au collisions. A Cartesian surface-spherical harmonic decomposition technique was used to extract the kaon source function. The latter was found to have a three-dimensional Gaussian shape and can be adequately reproduced by Therminator event-generator simulations with resonance contributions taken into account. Compared to the pion one, the kaon source function is generally narrower and does not have the long tail along the pair transverse momentum direction. The kaon Gaussian radii display a monotonic decrease with increasing transverse mass mT over the interval of 0.55≤mT≤1.15 GeV/c2. While the kaon radii are adequately described by the mT -scaling in the outward and sideward directions, in the longitudinal direction the lowest mT value exceeds the expectations from a pure hydrodynamical model prediction.
机译:我们提出了来自√sNN= 200 GeV Au + Au碰撞的相似符号,低横向动量kaon对的三维相关函数的度量。使用笛卡尔表面球谐分解技术提取kaon源函数。发现后者具有三维高斯形状,并且可以在考虑到共振影响的情况下通过Therminator事件生成器仿真充分复制。与介子一相比,钾离子源函数通常更窄,并且沿一对横向动量方向没有长尾巴。在0.55≤mT≤1.15GeV / c2的区间内,随着横向质量mT的增加,kaon高斯半径显示出单调减小。尽管在向外和向侧的mT缩放可以充分描述kaon半径,但在纵向方向上,最低的mT值超过了纯流体力学模型预测的期望值。

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