论文标题

与爱丽丝的小型碰撞系统中的陌生生产

Strangeness production in small-collision systems with ALICE

论文作者

Bhasin, Anju, Sharma, Meenakshi

论文摘要

我们介绍了进行的新研究,目的是更好地理解奇怪颗粒的生产机制,从而在小型碰撞系统中的陌生性增强现象。在最近的一项研究中,光束残余物(观众)运输并被零度量热比特(ZDC)检测到的非常正向能量用于对事件进行分类。使用多差异方法研究了有效能量和粒子多样性对陌生产生的贡献,以消除初始和最终状态效应。在第二项研究中,通过将软化和硬过程(例如喷气机)对奇怪的强子产生的贡献进行了进一步研究,从而进一步研究了PP中陌生性增强的起源。已经利用了涉及全喷气重建或两粒子相关的技术。结果表明,相对陌生的产生增加来自基础事件的增长,并表明软(横向前进)过程是对奇怪的强子产生和增强陌生性的主要贡献。此外,在PP碰撞中也可以看到,陌生产生随着中等性的多样性而增加,并且与有效能量存在抗相关性。

We present the new studies which are performed with the aim of better understanding the production mechanisms for strange particles, and hence the strangeness enhancement phenomenon, in small-collision systems. In one of the recent studies, the very forward energy transported by beam remnants (spectators) and detected by the Zero Degree Calorimeters (ZDC) is used to classify events. The contribution of the effective energy and the particle multiplicity on strangeness production is studied using a multi-differential approach in order to disentangle initial and final state effects. In the second study, the origin of strangeness enhancement with multiplicity in pp has been further investigated by separating the contribution of soft and hard processes, such as jets, to strange hadron production. Techniques involving full jet reconstruction or two-particle correlations have been exploited. The results indicate that the increased relative strangeness production emerges from the growth of the underlying event and suggest that soft (transverse to leading) processes are the dominant contribution to strange hadron production and strangeness enhancement. Further it is also seen in pp collisions that strangeness production increases with midrapidity multiplicity and there exists an anti-correlation with the effective energy.

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