Tachyonic effects on Kähler moduli stabilized inflaton potential in type-IIB/F theory

Abhijit Let, Buddhadeb Ghosh
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Abstract

We investigate the effects of inclusion of charged tachyonic open-string scalars in the perturbative and the non-perturbative K\"ahler moduli stabilizations in a geometry of three intersecting magnetized D7-brane stacks in type-IIB/F theory and also study the overall influence of this process on the inflaton potential, in a hybrid inflation scenario. We find that a tachyon lowers the minimum of the inflaton potential and assists to end the inflation. For simplicity, we have included one tachyon at a time in the present work and observe that this procedure preserves the features of slow-roll plateau of the potential. An interesting observation here is that the tachyonic part of the potential can be fine-tuned to get an almost zero minimum of the potential, thereby conforming to the small experimental value of the cosmological constant
对 IIB/F 型理论中凯勒模量稳定流入势的时速效应
我们研究了在IIB/F型理论中三个相交磁化D7-rane堆栈的几何中,在微扰和非微扰K\"ahler模稳化中加入带电的超速子开弦卡尔的影响,并研究了在混合膨胀情景中这一过程对胀气势的整体影响。为了简单起见,我们在本研究中一次只包含一个超速子,并观察到这一过程保留了势的慢滚高原特征。一个有趣的现象是,可以对势垒的超速子部分进行微调,使势垒的最小值几乎为零,从而符合宇宙学常数的小实验值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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