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Baryon preclustering at the freeze-out of heavy-ion collisions and light-nuclei production

机译:在冻结的重离子碰撞和轻质核制作中的Baryon inclesting

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摘要

Following the idea of nucleon clustering and light-nuclei production in relativistic heavy-ion collisions close to the QCD critical-end point, we address the quantum effects affecting the interaction of several nucleons at finite temperature. For this aim we use the K-harmonics method to four-nucleon states (alpha particle), and also develop a novel semiclassical "flucton" method at finite temperature, based on certain classical paths in Euclidean time, and apply it to two- and four-particle configurations. To study possible effects on the light-nuclei production close to the QCD critical point, we also made such calculations with modified internuclear potentials. For heavy-ion experiments, we propose new measurements of light-nuclei multiplicity ratios which may show enhancements due to baryon preclustering. We point out the special role of the O(50) four-nucleon excitations of alpha-particle, feeding into the final multiplicities of d, t, He-3, and He-4, and propose to directly look for their two-body decays.
机译:在核磁聚类和光核产生的思想之后,在接近QCD关键终点的相对论重离子碰撞中,我们解决了影响几种核聚体在有限温度下的量子效应。对于此目的,我们将K-谐波方法用于四核状状态(α粒子),并且还基于Euclidean时间的某些经典路径,在有限温度下开发一种新的半导体“波动”方法,并将其施加到两个 - 和四粒子配置。为了研究接近QCD关键点的光核产生的可能影响,我们还通过改进的核心电位进行了这种计算。对于重离子实验,我们提出了新的光核多重性比率测量,这可能显示由于Baryon Precessing引起的增强。我们指出了O(50)的α-粒子的四核激发的特殊作用,饲喂D,T,He-3和He-4的最终多重,并建议直接寻找其双体衰减。

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