论文标题

多粒子量子统计相关功能在哈勃膨胀的强子气体中

Multi-particle quantum-statistical correlation functions in a Hubble-expanding hadron gas

论文作者

Csanad, Mate, Jakovac, Antal, Lokos, Sandor, Mukherjee, Ayon, Tripathy, Srikanta Kumar

论文摘要

高能物理学中的量子统计相关测量是获取有关粒子发射源的时空结构的重要工具。有几种最终的状态效应可以改变测得的feStoscopic相关函数。其中之一可能是研究的颗粒与膨胀的强子气体的相互作用,包括其他最终状态颗粒。与自由流相比,这可能会导致量子相关对的轨迹 - 因此可以改变量子相关的对。所产生的效果可以解释为一种类似aharonov-bohm的现象,从某种意义上说,量子相关的对的可能路径代表了一个封闭环,其内部磁场是由强子气体引起的。在本文中,通过分析计算和简单的数值模型,介绍了效果在重离子实验中的可能作用。研究了多粒子bose-Einstein相关函数的强度的修饰,发现在足够大的源密度的情况下,这种效应可能起不可忽略的作用。

Quantum-statistical correlation measurements in high-energy physics represent an important tool to obtain information about the space-time structure of the particle-emitting source. There are several final state effects which may modify the measured femtoscopic correlation functions. One of these may be the interaction of the investigated particles with the expanding hadron gas, consisting of the other final state particles. This may cause the trajectories - and hence the phases - of the quantum-correlated pairs to be modified compared to free streaming. The resulting effect and could be interpreted as an Aharonov-Bohm-like phenomenon, in the sense that the possible paths of a quantum-correlated pair represent a closed loop, with an internally present field caused by the hadron gas. In this paper, the possible role of the effect in heavy-ion experiments is presented with analytical calculations and a simple numerical model. The modification of the strength of multi-particle Bose-Einstein correlation functions is investigated, and the is found that in case of sufficiently large source density, this effect may play a non-negligible role.

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