论文标题
字符串“ baryon''在四维$ \ mathcal {n} = 2 $ supersymmetric QCD中,来自2d-4d通信
String "Baryon'' in Four-Dimensional $\mathcal{N} = 2$ Supersymmetric QCD from 2D-4D Correspondence
论文作者
论文摘要
我们在四维(4D)$ \ MATHCAL {n} = 2 $ supersymmetric QCD中研究非亚洲涡流字符串,带有u $(n = 2)$ gauge group和$ n_f = 4 $ quark Hypermultiplets。最近已经表明,这些漩涡作为关键的超弦。在相关的字符串理论中发现并解释为4D $ \ MATHCAL {N} = 2 $ supersymmetric QCD中的封闭字符串状态的光谱。特别是,最低的字符串状态似乎是无质量的bps“ baryon”。在这里,我们使用纯粹的现场理论方法显示了这种弦味的重子的发生。为此,我们研究了关于非亚伯语字符串的共形世界单曲理论 - 所谓的加权$ \ Mathcal {n} =(2,2)$ supersymmetric $ \ Mathbb {cp} $模型。它的目标空间由六维非压缩的calabi-yau空间$ y_6 $,conifold。我们使用模型的镜像描述来研究BPS扭结频谱及其在边缘稳定性的曲线(壁)上的转换。然后,我们使用2D-4D对应关系来表明,Conifold的复杂结构的变形与4D理论中非扰动Higgs分支的出现有关,该理论在强耦合下打开。此Higgs分支上的模量参数是先前在字符串理论中发现的无质量BPS“ BARYON”的真空期望值。
We study non-Abelian vortex strings in four-dimensional (4D) $\mathcal{N} = 2$ supersymmetric QCD with U$(N=2)$ gauge group and $N_f=4$ flavors of quark hypermultiplets. It has been recently shown that these vortices behave as critical superstrings. The spectrum of closed string states in the associated string theory was found and interpreted as a spectrum of hadrons in 4D $\mathcal{N} = 2$ supersymmetric QCD. In particular, the lowest string state appears to be a massless BPS "baryon." Here we show the occurrence of this stringy baryon using a purely field-theoretic method. To this end we study the conformal world-sheet theory on the non-Abelian string -- the so called weighted $\mathcal{N} = (2,2)$ supersymmetric $\mathbb{CP}$ model. Its target space is given by the six-dimensional non-compact Calabi-Yau space $Y_6$, the conifold. We use mirror description of the model to study the BPS kink spectrum and its transformations on curves (walls) of marginal stability. Then we use the 2D-4D correspondence to show that the deformation of the complex structure of the conifold is associated with the emergence of a non-perturbative Higgs branch in 4D theory which opens up at strong coupling. The modulus parameter on this Higgs branch is the vacuum expectation value of the massless BPS "baryon" previously found in string theory.