论文标题
广义3D Instanton晶体的许多阶段
Many Phases of Generalized 3D Instanton Crystals
论文作者
论文摘要
大量颜色的核物质必然在固相中。特别是全息核物质采用了风味群的激体晶体的形式。在本文中,我们启动了三维晶体结构的分析以及来自全息二元性的两体电位的方向模式。分析的结果包括几个意外结果。我们对O(10000)Instantons的集合进行了模拟,从而确定了两体潜力中非亚伯利亚取向项的不同权重因子的不同值的晶格结构和方向。所得的相图非常复杂,包括各种具有各种全球取向模式的铁磁和反铁磁晶体,以及各种方向没有首选方向的各种“非亚伯”晶体。后者包括面部中心,六角形和简单的立方晶体的变体,这些晶体可能具有很大或小的纵横比。通过对长距离差异的分析分析以及对非亚伯晶体之间(无差异)能量差异的数值计算来增强模拟结果,这使我们能够精确地确定相图的结构。
Nuclear matter at large number of colors is necessarily in a solid phase. In particular holographic nuclear matter takes the form of a crystal of instantons of the flavor group. In this article we initiate the analysis of the three-dimensional crystal structures and the orientation patterns for the two-body potential that follows from holographic duality. The outcome of the analysis includes several unexpected results. We perform simulations of ensembles of O(10000) instantons whereby we identify the lattice structure and orientations for the different values of the weight factors of the non-Abelian orientation terms in the two-body potential. The resulting phase diagram is surprisingly complex, including a variety of ferromagnetic and antiferromagnetic crystals with various global orientation patterns, and various "non-Abelian" crystals where orientations have no preferred direction. The latter include variants of face-centered-cubic, hexagonal, and simple cubic crystals which may have remarkably large or small aspect ratios. The simulation results are augmented by analytic analysis of the long-distance divergences, and numerical computation of the (divergence free) energy differences between the non-Abelian crystals, which allows us to precisely determine the structure of the phase diagram.