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Chiral symmetry breaking and external fields in the Kuperstein-Sonnenschein model

机译:Kuperstein-Sonnenschein模型中的手性对称破坏和外场

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摘要

A novel holographic model of chiral symmetry breaking has been proposed by Kuperstein and Sonnenschein by embedding non-supersymmetric probe D7 and anti-D7 branes in the Klebanov-Witten background. We study the dynamics of the probe flavours in this model in the presence of finite temperature and a constant electromagnetic field. In keeping with the weakly coupled field theory intuition, we find the magnetic field promotes spontaneous breaking of chiral symmetry whereas the electric field restores it. The former effect is universally known as the “magnetic catalysis” in chiral symmetry breaking. In the presence of an electric field such a condensation is inhibited and a current flows. Thus we are faced with a steady-state situation rather than a system in equilibrium. We conjecture a definition of thermodynamic free energy for this steady-state phase and using this proposal we study the detailed phase structure when both electric and magnetic fields are present in two representative configurations: mutually perpendicular and parallel.
机译:Kuperstein和Sonnenschein通过在Klebanov-Witten背景中嵌入非超对称探针D7和反D7分子,提出了一种新的手征对称性全息模型。我们在存在有限温度和恒定电磁场的情况下研究了该模型中探针风味的动力学。与弱耦合场论的直觉一致,我们发现磁场促进了手性对称性的自发破坏,而电场则恢复了它。前一种效应被普遍称为手性对称性断裂中的“磁催化”。在电场的存在下,这种冷凝被抑制并且电流流动。因此,我们面临的是稳态情况,而不是处于平衡状态的系统。我们推测出此稳态相的热力学自由能的定义,并使用此建议,我们研究了电场和磁场都以两种代表性结构(相互垂直和平行)存在时的详细相结构。

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