论文标题

弱重力(和其他猜想),超对称性损坏

Weak gravity (and other conjectures) with broken supersymmetry

论文作者

Bonnefoy, Quentin, Dudas, Emilian, Lüst, Severin

论文摘要

我们研究了非对称弦理论设置中的弱重力猜想。确切地说,这些是I型字符串理论,具有超对称性损坏的Scherk-Schwarz和在II型字符串理论中包裹在磁化托里的D Branes上的开放字符串。我们计算一环相同的麸皮之间的远程相互作用,并将它们与更高程度形式的弱重力猜想进行比较。在我们的示例中,Susy Breaking以BPS不再是BPS的Branes之间的相互作用,以验证弱重力猜想的方式。在带有Scherk-Schwarz机制的I型中,单环量子效应减少了麸皮的张力,因此存在远距离的排斥力。非变化的棕褐色电位与存在模量和可能的d脑状态的存在的相关性很好地连接到其他swampland猜想。对于II型字符串中的磁化麸皮,我们检查非BPS Branes是否在开放式弦频谱不含Tachyon时会产生长距离排斥。最终,弦乐对象在讨论中的作用使得进一步理解susy骨折的字符串中的Swampland猜想令人信服,更不用说它们的现象学相关性了。

We study the weak gravity conjecture in non-supersymmetric string theory setups. Precisely, those are type I string theory with supersymmetry broken à la Scherk-Schwarz and open strings on D branes wrapped around magnetized tori in type II string theory. We compute long-range interactions between identical branes at one-loop and compare them to the weak gravity conjecture for higher-degree forms. In our examples, SUSY breaking generates interactions between branes, which are not anymore BPS, in such a way that the weak gravity conjecture is verified. In type I with the Scherk-Schwarz mechanism, the tension of the branes is reduced by one-loop quantum effects, so that there are long-range repulsive forces. The correlation of the non-vanishing brane potential with the presence of a running modulus and of possible D branes bound states nicely connects to other swampland conjectures. For magnetized branes in type II strings, we check that non-BPS branes experience a long-range repulsion whenever the open string spectrum is tachyon-free. Ultimately, the role of stringy objects in the discussion makes it compelling to further understand swampland conjectures in strings with broken SUSY, let alone their phenomenological relevance.

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