论文标题

(惊人的)超级迷宫

The (amazing) Super-Maze

论文作者

Bena, Iosif, Hampton, Shaun D., Houppe, Anthony, Li, Yixuan, Toulikas, Dimitrios

论文摘要

IIA型字符串理论中三付ns5-F1-P黑洞的熵来自$ n_1 $ f1字符串的破坏成$ n_1 n_1 n_5 $小字符串,这成为独立的动量载体。在M理论中,小弦对应于M2 brane的条带,该条将沿M理论方向分离的一对平行的M5 Branes对。我们表明,如果人们考虑了M5麸皮上M理论的小字符串的反应,就会获得迷宫般的结构,可以在其中增加动量波。我们还表明,在小字符串中添加动量波会产生一种携带动量的牛brane构型 - 一种超迷宫 - 在本地保留16个增压。因此,我们期望超级迷宫的反应会产生一类新的无水平黑洞微晶格解决方案,该解决方案保留了黑洞地平线的旋转对称性,并携带$ \ sqrt {5/6} $。

The entropy of the three-charge NS5-F1-P black hole in Type IIA string theory comes from the breaking of $N_1$ F1 strings into $N_1 N_5$ little strings, which become independent momentum carriers. In M theory, the little strings correspond to strips of M2 brane that connect pairs of parallel M5 branes separated along the M-theory direction. We show that if one takes into account the backreaction of the M-theory little strings on the M5 branes one obtains a maze-like structure, to which one can add momentum waves. We also show that adding momentum waves to the little strings gives rise to a momentum-carrying brane configuration -- a super-maze -- which locally preserves 16 supercharges. We therefore expect the backreaction of the super-maze to give rise to a new class of horizonless black-hole microstate solutions, which preserve the rotational symmetry of the black-hole horizon and carry $\sqrt{5/6}$ of its entropy.

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