...
首页> 外文期刊>The Astrophysical journal >Observational Viability of an Inflation Model with E-model Nonminimal Derivative Coupling
【24h】

Observational Viability of an Inflation Model with E-model Nonminimal Derivative Coupling

机译:具有E模型非最小导数耦合的通货膨胀模型的观测生存力

获取原文
           

摘要

By starting with a two-fields model in which the fields and their derivatives are nonminimally coupled to gravity, and then by using a conformal gauge, we obtain a model in which the derivatives of the canonically normalized field are nonminimally coupled to gravity. By adopting some appropriate functions, we study two cases with constant and E-model nonminimal derivative coupling, while the potential in both cases is chosen to be E-model one. We show that contrary to the single-field α-attractor model, there is an attractor point in the large N and small α limits in our setup, and for both mentioned cases there is an attractor line in these limits that the r?n s trajectories tend to. By studying the linear and nonlinear perturbations in this setup, and by comparing the numerical results with Planck2015 observational data, we obtain some constraints on the free parameter α. We show that by considering the E-model potential and coupling function, the model is observationally viable for all values of M (mass scale of the model). We use the observational constraints on the tensor-to-scalar ratio and the consistency relation to obtain some constraints on the sound speed of the perturbations in this model. As a result, we show that in a nonminimal derivative α-attractor model, it is possible to have small sound speed and therefore large non-Gaussianity.
机译:通过从两场模型开始,在该模型中,场及其导数与引力非最小耦合,然后使用保形规,我们获得了一个模型,在该模型中,规范化规范化场的导数与引力非最小耦合。通过采用一些适当的函数,我们研究了两种具有常数和E模型非最小导数耦合的情况,而两种情况下的势均被选择为E模型。我们证明,与单场α吸引子模型相反,在我们的设置中,在大N和小α极限中都有一个吸引子点,并且对于上述两种情况,在这些极限中都有一条吸引子线,即r?ns轨迹倾向于。通过研究此设置中的线性和非线性扰动,并将数值结果与Planck2015观测数据进行比较,我们获得了对自由参数α的一些约束。我们表明,通过考虑E模型的电势和耦合函数,该模型对于M的所有值(模型的质量标)在观察上都是可行的。我们使用张量与标量比的观察约束以及一致性关系来获得该模型中摄动声速的一些约束。结果,我们表明,在非最小导数α吸引子模型中,可能具有较小的声速,因此可能具有较大的非高斯性。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号