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首页> 外文期刊>Journal of High Energy Physics >Charged magnetic brane solutions in AdS5 and the fate of the third law of thermodynamics
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Charged magnetic brane solutions in AdS5 and the fate of the third law of thermodynamics

机译:AdS5中的带电磁膜解决方案和热力学第三定律的命运

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摘要

We construct asymptotically AdS5 solutions to 5-dimensional Einstein-Maxwell theory with Chern-Simons term which are dual to 4-dimensional gauge theories, including (mathcal{N} = 4 ) SYM theory, in the presence of a constant background magnetic field B and a uniform electric charge density ρ. For the solutions corresponding to supersymmetric gauge theories, we find numerically that a small magnetic field causes a drastic decrease in the entropy at low temperatures. The near-horizon AdS2 × R 3 geometry of the purely electrically charged brane thus appears to be unstable under the addition of a small magnetic field. Based on this observation, we propose a formulation of the third law of thermodynamics (or Nernst theorem) that can be applied to black holes in the AdS/CFT context. We also find interesting behavior for smaller, non-supersymmetric, values of the Chern-Simons coupling k. For k = 1 we exhibit exact solutions corresponding to warped AdS3 black holes, and show that these can be connected to asymptotically AdS5 spacetime. For k ≤ 1 the entropy appears to go to a finite value at extremality, but the solutions still exhibit a mild singularity at strictly zero temperature. In addition to our numerics, we carry out a complete perturbative analysis valid to order B 2, and find that this corroborates our numerical results insofar as they overlap.
机译:我们使用恒定的背景磁场B构造具有Chern-Simons项的5维爱因斯坦-麦克斯韦理论的渐近AdS5解,该解是双重至4维规范理论,包括(mathcal {N} = 4)SYM理论。和均匀的电荷密度ρ。对于与超对称规范理论相对应的解,我们在数值上发现,较小的磁场会导致低温下熵的急剧下降。因此,在加上小磁场的情况下,纯带电皮膜的近水平AdS2×R 3几何形状似乎不稳定。基于此观察结果,我们提出了热力学第三定律(或能斯特定理)的表述,该定律可应用于AdS / CFT上下文中的黑洞。我们还发现对于Chern-Simons耦合k较小,非超对称的值,存在有趣的行为。对于k = 1,我们展示了与弯曲的AdS3黑洞相对应的精确解,并表明它们可以与AdS5时空渐近相关。当k≤1时,熵在极值下似乎变为有限值,但在严格为零的温度下,溶液仍显示出温和的奇异性。除了我们的数值外,我们还对B 2阶进行了完整的微扰分析,发现只要它们重叠,就可以证实我们的数值结果。

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