Energy and system size dependence of strongly intensive fluctuation measures in heavy-ion collisions at FAIR energies

Bushra Ali, Shakeel Ahmad, Afzal Ahmad
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Abstract

Abstract Event-by-event fluctuations of multiplicity and transverse momentum of charged hadrons produced in heavy-ion collisions at FAIR energies, 10A, 20A, 30A and 40A GeV are studied in the framework of relativistic transport model, URQMD. Dependence of two families of strongly intensive measures of multiplicity(N) and transverse momentum(pT ) fluctuations, ∆[pT , N] and Σ[pT , N], on collision centrality, centrality bin-widths and pseudorapidity windows are examined. Attempts are also made to study NN, NpT and pT pT fluctuations using two window analysis method. The findings suggest that the measure, ∆[pT , N] be dealt with proper selection of centrality intervals. This measure also exhibits a strong dependence on the widths of η windows. The variable Σ[pT , N], however, is observed to be insensitive to the centrality bin-widths and shows a variation of < 5% with the widths of η windows. The analysis of data after event mixing gives ∆[pT , N] and Σ[pT , N] values asthe widths of η windows and collision centrality, as predicted by model of independent∼ 1 irrespective of emission, IPM. The study of joint fluctuations of the two quantities on two η windows separated in ηof η space, reveals that Σ[NF , NB] values arewindows whereas, the values of Σ[NF, pTB] and Σ[∼p 1 irrespective of the positionTF , pTB] firstly increase with ηsep and later acquire saturations. The observed trend of centrality dependence of Σ[NF , NB], Σ[NF , pTB] and Σ[pTF , pTB] agrees fairly well with those observed in MC simulated studies carried out for AA collisions at LHC energies in the framework model of string fusion.&#xD;
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FAIR能量下重离子碰撞中强强度涨落测量对能量和系统大小的依赖
在相对论输运模型URQMD的框架下,研究了FAIR能量(10A、20A、30A和40A GeV)重离子碰撞中带电强子的多重性和横向动量随事件的涨落。研究了重数(N)和横向动量(pT)波动的两类强密集测度(∆[pT, N]和Σ[pT, N]对碰撞中心性、中心性箱宽和伪快度窗口的依赖性。并尝试用双窗分析方法研究NN、NpT和pT的波动。研究结果表明,测量∆[pT, N]应适当选择中心性区间。这一措施也显示出很强的依赖于η窗的宽度。然而,观察到变量Σ[pT, N]对中心性bin-width不敏感,并显示出<η窗宽度为5%。事件混合后的数据分析给出∆[pT, N]和Σ[pT, N]值作为η窗的宽度和碰撞中心性,正如独立的~ 1模型所预测的那样,不考虑发射,IPM。对η空间中分离的两个η窗上两个量的联合波动的研究表明,Σ[NF, NB]值是窗口,而Σ[NF, pTB]和Σ[~ p 1]的值与位置tf, pTB]无关,首先随着ηsep增加,然后达到饱和。观察到的Σ[NF, NB], Σ[NF, pTB]和Σ[pTF, pTB]的中心性依赖趋势与在弦融合框架模型中对LHC能量下的AA碰撞进行的MC模拟研究的结果相当吻合。& & #xD;
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