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Things Fall Apart: Topology Change from Winding Tachyons

机译:事情分崩离析:绕行距的拓扑变化

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摘要

We argue that closed string tachyons drive two spacetime topology changing transitions -- loss of genus in a Riemann surface and separation of a Riemann surface into two components. The tachyons of interest are localized versions of Scherk-Schwarz winding string tachyons arising on Riemann surfaces in regions of moduli space where string-scale tubes develop. Spacetime and world-sheet renormalization group analyses provide strong evidence that the decay of these tachyons removes a portion of the spacetime, splitting the tube into two pieces. We address the fate of the gauge fields and charges lost in the process, generalize it to situations with weak flux backgrounds, and use this process to study the type 0 tachyon, providing further evidence that its decay drives the theory sub-critical. Finally, we discuss the time-dependent dynamics of this topology-changing transition and find that it can occur more efficiently than analogous transitions on extended supersymmetric moduli spaces, which are limited by moduli trapping.
机译:我们认为闭合弦速子驱动了两个时空拓扑变化的转变-黎曼曲面中的类损失和黎曼曲面分成两个部分。感兴趣的速动是Scherk-Schwarz缠绕弦速动的局部版本,出现在弦尺度管发展的模空间区域的黎曼表面上。时空和世界表重新归一化组的分析提供了有力的证据,表明这些速球的衰减会消除一部分时空,从而将电子管分成两部分。我们解决了过程中标尺场和电荷损失的命运,将其推广到通量背景较弱的情况,并使用此过程研究了0型速度计,提供了进一步的证据表明其衰减推动了亚临界理论。最后,我们讨论了这种拓扑变化转变的时变动力学,发现它比扩展的超对称模空间上的类似转变更有效,后者受模陷限制。

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