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Disoriented chiral condensate: Theory and experiment

机译:迷失方向的手性冷凝物:理论与实验

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It is thought that a region of pseudo-vacuum, where the chiral order parameter is misaligned from its vacuum orientation in isospin space, might occasionally form in high-energy hadronic or nuclear collisions. The possible detection of such disoriented chiral condensate (DCC) would provide useful information about the chiral structure of the QCD vacuum and/or the chiral phase transition of strong interactions at high temperature. We review the theoretical developments concerning the possible DCC formation in high-energy collisions as well as the various experimental searches that have been performed so far. We discuss future prospects for upcoming DCC searches e.g. in high-energy heavy-ion collision experiments at RHIC and LHC. (c) 2005 Published by Elsevier B.V.
机译:据认为,在高能强子或核碰撞中,有时可能会形成伪真空区域,在该区域中手性顺序参数与其真空取向在同位旋空间中未对齐。此类散乱的手性缩合物(DCC)的可能检测将提供有关QCD真空的手性结构和/或高温下强相互作用的手性相变的有用信息。我们回顾了有关高能碰撞中可能形成DCC的理论进展,以及迄今为止进行的各种实验研究。我们讨论了即将进行的DCC搜索的未来前景,例如在RHIC和LHC的高能重离子碰撞实验中。 (c)2005年由Elsevier B.V.

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