论文标题

超密集的重重物质的天空和分数量子厅液滴的绘制拓扑结构

Mapping topology of skyrmions and fractional quantum Hall droplets to nuclear EFT for ultra-dense baryonic matter

论文作者

Rho, Mannque

论文摘要

我们将重型物质拓扑结构高密度的映射描述为核有效田间理论,该理论实现了从强核相关性出现的隐藏对称性。发现如此构建的理论与正常核物质和紧凑型明星物质中目前可用的观察结果没有冲突是一致的。所涉及的隐藏对称性是媒介中的“局部风味对称性”,被确定为QCD的(seiberg-)双重和隐藏的“量子标尺对称性”,其IR固定点具有“真正的Dilaton(GD)”,其特征是以非危险的pion pion和Dilaton腐烂常数为特征。 $ n_f \ geq 2 $ baryons和$ n_f = 1 $ baryons的分数量子厅(FQH)液滴拓扑的Skyrmion拓扑都是在“均质/隐藏”的wess-Zumino术语中统一的,该任期是隐藏的本地对称性(HLS)lagrangian。 FQH液滴在超越紧凑型恒星的密度状态中可能不可或缺的作用,通过向dilaton和Pion无质量的极限移动来探索尺度 - 手续的恢复。

We describe the mapping at high density of topological structure of baryonic matter to a nuclear effective field theory that implements hidden symmetries emergent from strong nuclear correlations. The theory so constructed is found to be consistent with no conflicts with the presently available observations in both normal nuclear matter and compact-star matter. The hidden symmetries involved are "local flavor symmetry" of the vector mesons identified to be (Seiberg-)dual to the gluons of QCD and hidden "quantum scale symmetry" with an IR fixed point with a "genuine dilaton (GD)" characterized by non-vanishing pion and dilaton decay constants. Both the skyrmion topology for $N_f \geq 2$ baryons and the fractional quantum Hall (FQH) droplet topology for $N_f=1$ baryons are unified in the "homogeneous/hidden" Wess-Zumino term in the hidden local symmetry (HLS) Lagrangian. The possible indispensable role of the FQH droplets in going beyond the density regime of compact stars approaching scale-chiral restoration is explored by moving toward the limit where both the dilaton and the pion go massless.

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