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首页> 外文期刊>Physical review, D >Probing impact-parameter dependent nuclear parton densities from double parton scatterings in heavy-ion collisions
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Probing impact-parameter dependent nuclear parton densities from double parton scatterings in heavy-ion collisions

机译:探测冲击参数依赖于核PATRON密度从离子碰撞中的双层分散

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We propose a new method to determine the spatially or impact-parameter dependent nuclear parton distribution functions (nPDFs) using the double parton scattering (DPS) processes in high-energy heavy-ion (proton-nucleus and nucleus-nucleus) collisions. We derive a simple generic DPS formula in nuclear collisions by accommodating both the nuclear collision geometry and the spatially dependent nuclear modification effect, under the assumption that the impact-parameter dependence of nPDFs is only related to the nuclear thickness function. While the geometric effect is widely adopted, the impact of the spatially dependent nuclear modification on DPS cross sections has been overlooked so far, which can, however, be significant when the initial nuclear modification is large. In turn, the DPS cross sections in heavy-ion collisions can provide useful information on the spatial dependence of nPDFs. They can be, in general, obtained in minimum-bias nuclear collisions, featuring the virtue of independence of Glauber modeling.
机译:我们提出了一种新的方法来使用高能重离子(质子 - 核和核 - 核)碰撞中的双PATRON散射(DPS)过程来确定空间或冲击参数依赖性核分布函数(NPDF)。在假设NPDFS的冲击参数依赖性与核厚度函数相关的假设下,我们通过容纳核碰撞几何形状和空间依赖性核改性效果来得出简单的通用DPS公式。虽然广泛采用了几何效果,但到目前为止已经忽略了空间依赖性核改性对DPS横截面的影响,但是,当初始核改性大时,这可以是显着的。反过来,重离子碰撞中的DPS横截面可以提供关于NPDFS的空间依赖性的有用信息。通常,它们可以在最小偏倚核碰撞中获得,具有Glauber建模的独立性。

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