论文标题

非微小耦合和轴承通胀的遗忘场

Nonminimal Couplings and the Forgotten Field of Axion Inflation

论文作者

McDonough, Evan, Guth, Alan H., Kaiser, David I.

论文摘要

我们研究非最小耦合到重力的轴突模型的多场动力学。与往常一样,我们考虑了一个规范$ u(1)$对称模型,其中轴是复杂标量场的阶段。如果复杂的标量场与重力具有非最小的耦合,则(经常被遗忘的)径向分量可以在轴支球场驱动的膨胀相位之前驱动通货膨胀阶段。在此设置中,由于非最小的耦合,轴支球场的质量取决于径向场,并且在径向膨胀阶段,轴支仍极为轻。随着径向场接近其潜力的最小值,在通货膨胀的第二阶段已经过渡,在此期间,轴支球场贡献了系统总能量密度的很大一部分,从而产生了“自然膨胀”的阶段。该系统表现出超轻质的等化扰动,通过转弯场空间轨迹将其转换为绝热扰动。对于cmb枢轴量表在转弯之前远离地平线的模型,这可以抑制张量与量表比$ r $ $ r $,而无需产生CMB非高斯或可观察到的等距扰动。最后,我们注意到,对于某些参数,在通货膨胀的第一阶段,相对于其在第二阶段的值时,轴突和规场之间的相互作用强度可以被抑制几个数量级。这将量规场(例如原始黑洞)的通货膨胀产生的限制与(p)重新加热期间的生产的约束有关。

We study the multifield dynamics of axion models nonminimally coupled to gravity. As usual, we consider a canonical $U(1)$ symmetry-breaking model in which the axion is the phase of a complex scalar field. If the complex scalar field has a nonminimal coupling to gravity, then the (oft-forgotten) radial component can drive a phase of inflation prior to an inflationary phase driven by the axion field. In this setup, the mass of the axion field is dependent on the radial field because of the nonminimal coupling, and the axion remains extremely light during the phase of radial inflation. As the radial field approaches the minimum of its potential, there is a transition to a second phase of inflation during which the axion field contributes a substantial fraction of the system's total energy density, yielding a phase of "natural inflation." This system exhibits ultra-light isocurvature perturbations, which are converted to adiabatic perturbations by a turning field-space trajectory. For models wherein the CMB pivot scale exited the horizon well before the turn, this acts to suppress the tensor-to-scalar ratio $r$, without generating CMB non-Gaussianity or observable isocurvature perturbations. Finally, we note that for certain parameters the interaction strength between axion and gauge fields can be suppressed during the first phase of inflation relative to its value during the second phase by several orders of magnitude. This decouples the constraints on the inflationary production of gauge fields (e.g., from primordial black holes) from the constraints on their production during (p)reheating.

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