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首页> 外文期刊>Communications in Mathematical Physics >Nonassociative Star Product Deformations for D-Brane World-Volumes in Curved Backgrounds
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Nonassociative Star Product Deformations for D-Brane World-Volumes in Curved Backgrounds

机译:弯曲背景下D-Brane世界体积的非缔合星积变形

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We investigate the deformation of D-brane world-volumes in curved backgrounds. We calculate the leading corrections to the boundary conformal field theory involving the background fields, and in particular we study the correlation functions of the resulting system. This allows us to obtain the world-volume deformation, identifying the open string metric and the noncommutative deformation parameter. The picture that unfolds is the following: when the gauge invariant combination ω=B+F is constant one obtains the standard Moyal deformation of the brane world-volume. Similarly, when dω= 0 one obtains the noncommutative Kontsevich deformation, physically corresponding to a curved brane in a flat background. When the background is curved, H=dω≠ 0, we find that the relevant algebraic structure is still based on the Kontsevich expansion, which now defines a nonassociative star product with an A ∞ homotopy associative algebraic structure. We then recover, within this formalism, some known results of Matrix theory in curved backgrounds. In particular, we show how the effective action obtained in this framework describes, as expected, the dielectric effect of D-branes. The polarized branes are interpreted as a soliton, associated to the condensation of the brane gauge field.
机译:我们在弯曲的背景下调查D膜世界卷的变形。我们计算了涉及背景场的边界共形场理论的主要校正,尤其是研究了所得系统的相关函数。这使我们能够获得世界体积的变形,从而确定开弦度量和非交换变形参数。展开的图片如下:当规范不变组合ω= B + F为常数时,将获得麸世界体积的标准Moyal变形。类似地,当dω= 0时,将获得非可交换的Kontsevich变形,其物理上对应于平坦背景中的弯曲曲折。当背景弯曲时,H =dω≠0,我们发现相关的代数结构仍基于Kontsevich展开,该展开现在定义了一个具有A∞同同关联缔合结构的非缔合星积。然后,我们在这种形式主义中恢复了弯曲背景下矩阵理论的一些已知结果。特别是,我们展示了如何在此框架中获得有效的作用,正如所预期的那样,描述了D射线的介电效应。极化的金属薄膜被解释为孤子,与金属薄膜规格场的凝结有关。

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  • 来源
    《Communications in Mathematical Physics》 |2002年第1期|33-66|共34页
  • 作者单位

    Laboratoire de Physique Théorique École Normale Supérieure 75231 Paris Cedex 05 France.¶E-mail: cornalba@lpt.ens.fr;

    Department of Physics Harvard University Cambridge MA 02138 USA.¶E-mail: ricardo@lorentz.harvard.edu;

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