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Electromagnetic instability and Schwinger effect in the Witten-Sakai-Sugimoto model with D0-D4 background

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arxiv 1612.07087 v3 pith:WRUVHYST submitted 2016-12-21 hep-th hep-ph

classification hep-thhep-ph
keywords decayd0-d4instabilitymodelratethetaangleelectromagnetic
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Using the Witten-Sakai-Sugimoto model in the D0-D4 background, we holographically compute the vacuum decay rate of the Schwinger effect in this model. Our calculation contains the influence of the D0-brane density which could be identified as the $\theta$ angle or chiral potential in QCD. Under the strong electromagnetic fields, the instability appears due to the creation of quark-antiquark pairs and the associated decay rate can be obtained by evaluating the imaginary part of the effective Euler-Heisenberg action which is identified as the action of the probe brane with a constant electromagnetic field. In the bubble D0-D4 configuration, we find the decay rate decreases when the $\theta$ angle increases since the vacuum becomes heavier in the present of the glue condensate in this system. And the decay rate matches to the result in the black D0-D4 configuration at zero temperature limit according to our calculations. In this sense, the Hawking-Page transition of this model could be consistently interpreted as the confined/deconfined phase transition. Additionally there is another instability from the D0-brane itself in this system and we suggest that this instability reflects to the vacuum decay triggered by the $\theta$ angle as it is known in the $\theta$-dependent QCD.

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  1. Schwinger Effect in a Twice Anisotropic Holographic Model

    hep-ph 2025-06 conditional novelty 4.0 of 10

    In a twice anisotropic holographic QCD model, magnetic anisotropy lowers the Schwinger pair-production barrier while spatial anisotropy raises it.

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