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Runaway potentials in warm inflation satisfying the swampland conjectures

机译:在令人满意的令人满意的温暖通胀中的失控潜力

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The runaway potentials, which do not possess any critical points, are viable potentials which befit the recently proposed de Sitter swampland conjecture very well. In this work, we embed such potentials in the warm inflation scenario motivated by quantum field theory models generating a dissipation coefficient with a dependence cubic in the temperature. It is demonstrated that such models are able to remain in tune with the present observations and they can also satisfy all three swampland conjectures, namely, the swampland distance conjecture, the de Sitter conjecture, and the trans-Planckian censorship conjecture, simultaneously. These features make such models viable from the point of view of effective field theory models in quantum gravity and string theory, away from the swampland.
机译:不具有任何关键点的失控潜力是可行的潜力,这是最近提出的De Satter Swampland猜想的可行潜力。 在这项工作中,我们在温度下产生耗散系数的量子场理论模型的温暖通胀场景中的这种潜力嵌入了这种潜力。 结果表明,这种模型能够与本发明的观察结果保持调整,并且它们也可以满足所有三个Swampland猜想,即Swampland距离猜想,De Satter猜想和同时的反式普朗克审查猜想。 这些特征从量子重力和弦理论的有效领域理论模型的角度来看,远离Swampland,使这些型号可行。

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