论文标题

$α$ clustered碳的碰撞中的热光子的产生和各向异性流动,并在相对论的核中具有重核

Production and anisotropic flow of thermal photons in collision of $α$-clustered carbon with heavy nuclei at relativistic energies

论文作者

Dasgupta, Pingal, Chatterjee, Rupa, Ma, Guo-Liang

论文摘要

在光核中存在$α$聚集的结构,在低能量的核结构研究中会产生不同的外来形状。最近的现象学研究表明,重核与$α$凝聚的碳($^{12} $ c)在相对论能量上的碰撞会导致较大的初始状态各向异性。预计这将显着影响产生的颗粒的最终动量各向异性。与Hadronic可观察物相比,电磁辐射的发射被认为对初始状态更敏感,因此预期光子可观察物将受到初始聚集结构的影响。 In this work we estimate the production and anisotropic flow of photons from most-central collisions of triangular $α$-clustered carbon and gold at $\sqrt{s_{\rm NN}}=200$ GeV using an event-by-event hydrodynamic framework and compare the results with those obtained from unclustered carbon and gold collisions.我们表明,与未簇的碳相比,大多数中央碰撞的热光子$ v_3 $对于簇状情况明显大,而椭圆流参数在两种情况下并没有显示太大差异。此外,发现各向异性流量系数的比率是可以观察到的潜在潜在的,以限制相对论重离子碰撞中产生的初始状态,并更多地了解碳核中$α$凝聚的结构。

The presence of $α$-clustered structure in the light nuclei produces different exotic shapes in nuclear structure studies at low energies. Recent phenomenological studies suggest that collision of heavy nuclei with $α$-clustered carbon ($^{12}$C) at relativistic energies can lead to large initial state anisotropies. This is expected to impact the final momentum anisotropies of the produced particles significantly. The emission of electromagnetic radiations is considered to be more sensitive to the initial state compared to hadronic observables and thus photon observables are expected to be affected by the initial clustered structure profoundly. In this work we estimate the production and anisotropic flow of photons from most-central collisions of triangular $α$-clustered carbon and gold at $\sqrt{s_{\rm NN}}=200$ GeV using an event-by-event hydrodynamic framework and compare the results with those obtained from unclustered carbon and gold collisions. We show that the thermal photon $v_3$ for most central collisions is significantly large for the clustered case compared to the case with unclustered carbon, whereas the elliptic flow parameter does not show much difference for the two cases. In addition, the ratio of anisotropic flow coefficients is found to be a potential observable to constrain the initial state produced in relativistic heavy-ion collisions and also to know more about the $α$-clustered structure in carbon nucleus.

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