论文标题

QCD中的新兴现象:全息视角

Emergent phenomena in QCD: The holographic perspective

论文作者

de Teramond, Guy F.

论文摘要

QCD对强子特性的相关特性的基本理解仍然难以捉摸,应理解为紧急现象,这在非常取决于物理时空的维度数量。这些特性包括颜色限制的机理,强子质量尺度的起源,手性对称性断裂和辐射结合状态的模式。这些复杂问题中的某些问题最近在基于半经典QCD的半经典近似的强子结构的有效计算框架中解决了,其全息嵌入在抗DE保姆(ADS)空间中。该框架还体现了潜在的超符号代数结构,该结构引起了超符号群体中质量尺度的出现:它决定了介子,巴里子和四夸克的有效限制潜力。可正常化的零质量基态与没有重型型超对称伴侣的锥子鉴定,这是每个粒子家族中最低的介子状态共享的特性。这种新的强子物理学方法导致相对论波方程,其简单性与原子理中的Schroedinger方程相似,并为QCD的限制机制提供了重要的见解。

A basic understanding of the relevant features of hadron properties from first principles QCD has remained elusive, and should be understood as emergent phenomena which depend critically on the number of dimensions of physical spacetime. These properties include the mechanism of color confinement, the origin of the hadron mass scale, chiral symmetry breaking and the pattern of hadronic bound states. Some of these complex issues have been recently addressed in an effective computational framework of hadron structure based on a semiclassical approximation to light-front QCD, and its holographic embedding in anti-de Sitter (AdS) space. This framework also embodies an underlying superconformal algebraic structure which gives rise to the emergence of a mass scale within the superconformal group: It determines the effective confinement potential of mesons, baryons and tetraquarks. The normalizable zero-mass ground state is identified with the pion which has no baryonic supersymmetric partner, a property which is shared for the lowest meson state in each particle family. This new approach to hadron physics leads to relativistic wave equations, similar in their simplicity to the Schroedinger equation in atomic physics, and provides important insights into the confinement mechanism of QCD.

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