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Polarization and Vorticity in the Quark-Gluon Plasma

机译:夸克 - 胶质等离子体中的极化和涡旋

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The quark-gluon plasma (QGP) produced by collisions between ultrarel-ativistic heavy nuclei is well described in the language of hydrodynamics. Noncentral collisions are characterized by very large angular momentum, which in a fluid system manifests as flow vorticity. This rotational structure can lead to a spin polarization of the hadrons that eventually emerge from the plasma, and thus these collisions provide experimental access to flow substructure at unprecedented detail. Recently, the first observations of A hyperon polarization along the direction of collisional angular momentum were reported. These measurements are in broad agreement with hydrody-namic and transport-based calculations and reveal that the QGP is the most vortical fluid ever observed. However, there remain important tensions between theory and observation that might be fundamental in nature. In the relatively mature field of heavy-ion physics, the discovery of global hyperon polarization and 3D simulations of the collision have opened an entirely new direction of research. We discuss the current status of this rapidly developing area and directions for future research.
机译:通过超级 - 物质重核之间的碰撞产生的夸盖胶质等离子体(QGP)以流体动力学的语言良好地描述。非中心碰撞的特征在于具有非常大的角动量,在流体系统中表现为流动涡度。这种旋转结构可以导致最终从等离子体中出现的旋转的旋转偏振,因此这些碰撞提供了在前所未有的细节下提供流量子结构的实验访问。最近,报道了沿着碰撞角动量方向的高速偏振的首次观察。这些测量与水性 - Namic和基于传输的计算的广泛协议,并揭示了QGP是有史以来最受血液的液体。然而,在理论与观察之间存在重要的紧张局势,这可能是基本的。在相对成熟的重离子物理领域中,碰撞的全球高速极化和3D模拟的发现已经开辟了完全新的研究方向。我们讨论了这种快速发展的区域和未来研究方向的现状。

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