核重叠 Pb-Pb 碰撞中 J/$ψ$ 和二重子的光生成

Nicolas Bizéfor the ALICE collaboration
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In addition, these measurements can shed\nlight on the theory behind photon-induced reactions in A-A collisions with\nnuclear overlap, including possible interactions of the measured probes with\nthe formed and fast expanding quark-gluon plasma. Since the produced quarkonium\nis expected to keep the polarization of the incoming photon due to $s$-channel\nhelicity conservation, the photoproduction origin of the J/$\\psi$ yield excess\nat very low transverse momentum, $p_{\\rm T}$, can be confirmed by the\nmeasurement of the J/$\\psi$ polarization. The ALICE detector can perform\nquarkonium production measurements at both mid ($|y|<0.9$) and forward\n($2.5<y<4$) rapidities down to $p_{\\rm T} = 0$. In the following, the new ALICE\nmeasurements of the J/$\\psi$ $y$-differential cross section and the first\npolarization results of coherently photoproduced J/$\\psi$ via the dimuon decay\nchannel at forward rapidity in Pb-Pb collisions at $\\sqrt{s_{NN}}=$ 5.02 TeV\nare reported. 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摘要

光子-光子反应和通过光子核反应产生J/$\psi$介子已经在超外围重离子碰撞中得到了广泛的研究,在这种碰撞中,碰撞参数大于核半径的两倍。近年来,在核重叠的核-核(A-A)对撞中也观测到了通过光子相互作用相干产生的J/$\psi$和二轻子。前者有助于在低Bjorken-$x$和高能量下约束核胶子分布,而后者可用于进一步绘制重离子碰撞中产生的电磁场。此外,这些测量还可以揭示核重叠的A-A对撞中光子诱导反应背后的理论,包括测量探针与已形成并快速膨胀的夸克-胶子等离子体之间可能存在的相互作用。由于s$沟道褶皱守恒,产生的夸克鎓预计会保持进入光子的偏振,因此可以通过测量J/$\psi$的偏振来证实J/$\psi$在很低的横动量($p_{\rm T}$)下产生过量的光生源。ALICE探测器可以在中速($|y|<0.9$)和前速($2.5本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Photoproduction of J/$ψ$ and dileptons in Pb-Pb collisions with nuclear overlap
Photon-photon reactions and the production of J/$\psi$ meson through photonuclear reactions have been extensively studied in ultra-peripheral heavy-ion collisions, in which the impact parameter is larger than twice the nuclear radius. In recent years, coherently photoproduced J/$\psi$ and dilepton production via photon-photon interactions have also been observed in nucleus-nucleus (A-A) collisions with nuclear overlap. The former can help to constrain the nuclear gluon distributions at low Bjorken-$x$ and high energy, while the latter could be used to further map the electromagnetic fields produced in heavy-ion collisions. In addition, these measurements can shed light on the theory behind photon-induced reactions in A-A collisions with nuclear overlap, including possible interactions of the measured probes with the formed and fast expanding quark-gluon plasma. Since the produced quarkonium is expected to keep the polarization of the incoming photon due to $s$-channel helicity conservation, the photoproduction origin of the J/$\psi$ yield excess at very low transverse momentum, $p_{\rm T}$, can be confirmed by the measurement of the J/$\psi$ polarization. The ALICE detector can perform quarkonium production measurements at both mid ($|y|<0.9$) and forward ($2.5
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