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Tunneling from a Minkowski vacuum to an AdS vacuum: A new thin-wall regime

机译:从Minkowski真空隧穿到ADS真空:一种新的薄壁状态

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摘要

Using numerical and analytic methods, we study quantum tunneling from a Minkowski false vacuum to an anti-de Sitter true vacuum. Scanning the parameter space of theories with quartic and nonpolynomial potentials, we find that for any given potential tunneling is completely quenched if gravitational effects are made sufficiently strong. For potentials where epsilon, the energy density difference between the vacua, is small compared to the barrier height, this occurs in the thin-wall regime studied by Coleman and De Luccia. However, we find that other potentials, possibly with epsilon much greater than the barrier height, produce a new type of thin-wall bounce when gravitational effects become strong. We show that the critical curve that bounds the region in parameter space where the false vacuum is stable can be found by a computationally simple overshoot/undershoot argument. We discuss the treatment of boundary terms in the bounce calculation and show that, with proper regularization, one obtains an identical finite result for the tunneling exponent regardless of whether or not these are included. Finally, we briefly discuss the extension of our results to transitions between anti-de Sitter vacua.
机译:使用数值和分析方法,我们将量子隧道从Minkowski虚假真空研究到抗DE STETTER真空真空。用四静脉和非平化电位扫描理论的参数空间,我们发现,对于任何给定的潜在隧道,如果引力效应足够强烈,则完全淬火。对于埃斯利翁,与屏障高度相比,Vacua的能量密度差异小的潜在潜力,这发生在由Coleman和De Luccia研究的薄壁状态中发生。然而,我们发现其他潜力,可能具有远远大于屏障高度,当引力效应变强时产生一种新型的薄壁反弹。我们表明,通过计算简单的过冲/下冲程参数,可以找到将假真空稳定的参数空间中区域中的临界曲线。我们讨论了反弹计算中的边界术语的处理,并表明,通过适当的正则化,无论这些是否包括这些,都会获得隧道指数的相同有限结果。最后,我们简要讨论了我们的结果延伸,以抗De Sitter Vacua之间的过渡。

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