论文标题
n = 4 chl型号的黑洞脱毛
Black Hole Hair Removal For N=4 CHL Models
论文作者
论文摘要
尽管在平坦空间和陶布纳特空间中的BMPV黑洞具有相同的近水压几何形状,但它们与微观分析具有不同的指标。对于IIB型理论的K3紧凑型,Sen等人在一系列论文中确定解决此难题的关键是黑洞的头发模式:光滑,正常,骨气和费米子自由度生活在地平线外。在本文中,我们将其研究扩展到n = 4个CHL Orbifold模型。对于这些模型,由于扭曲部门的存在,难题更具挑战性。我们确定了未介绍和扭曲部门中的头发模式。我们表明,在从微观分区函数中删除了头发模式的贡献后,4D和5D地平线分区函数一致。特别注意介绍有关旋转黑洞的头发模式平滑度分析的细节,从而填补了文献中的必要空白。
Although BMPV black holes in flat space and in Taub-NUT space have identical near-horizon geometries, they have different indices from the microscopic analysis. For K3 compactification of type IIB theory, Sen et al in a series of papers identified that the key to resolving this puzzle is the black hole hair modes: smooth, normalisable, bosonic and fermionic degrees of freedom living outside the horizon. In this paper, we extend their study to N = 4 CHL orbifold models. For these models, the puzzle is more challenging due to the presence of the twisted sectors. We identify hair modes in the untwisted as well as twisted sectors. We show that after removing the contributions of the hair modes from the microscopic partition functions, the 4d and 5d horizon partition functions agree. Special care is taken to present details on the smoothness analysis of hair modes for rotating black holes, thereby filling an essential gap in the literature.