论文标题
强子物理学中的diquark相关性:起源,影响和证据
Diquark Correlations in Hadron Physics: Origin, Impact and Evidence
论文作者
论文摘要
在过去的十年中,人们了解了黑龙的内部结构的明显转变。现代的实验设施,连续结合状态问题的新理论技术以及晶格登记的QCD的进步提供了有力的迹象,即软夸克+夸克(diquark)相关性在强子物理学中起着至关重要的作用。例如,理论表明这种相关的外观是动态性手性对称性破坏的必要结果,即。出现的一质子浓缩的推论,造成宇宙中几乎所有可见的质量;实验已经发现了在质子电磁形态的口味分离中的这种相关性的信号。现象学表明,diquark相关性可能对外来四翼和五角夸克·哈德子的形成至关重要。本文评估了大量此类信息,以巩固事实,并从中朝着一致,统一的强子结构的图片以及diquark相关性可能扮演的作用。
The last decade has seen a marked shift in how the internal structure of hadrons is understood. Modern experimental facilities, new theoretical techniques for the continuum bound-state problem and progress with lattice-regularised QCD have provided strong indications that soft quark+quark (diquark) correlations play a crucial role in hadron physics. For example, theory indicates that the appearance of such correlations is a necessary consequence of dynamical chiral symmetry breaking, viz. a corollary of emergent hadronic mass that is responsible for almost all visible mass in the universe; experiment has uncovered signals for such correlations in the flavour-separation of the proton's electromagnetic form factors; and phenomenology suggests that diquark correlations might be critical to the formation of exotic tetra- and penta-quark hadrons. A broad spectrum of such information is evaluated herein, with a view to consolidating the facts and therefrom moving toward a coherent, unified picture of hadron structure and the role that diquark correlations might play.