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The quantum cosmological wavefunction at very early times for a quadratic gravity theory

机译:二次引力理论在非常早期的量子宇宙波函数

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The quantum cosmological wavefunction for a quadratic gravity theory derived from the heterotic string effective action is obtained near the inflationary epoch and during the initial Planck era. Neglecting derivatives with respect to the scalar field, the wavefunction would satisfy a third-order differential equation near the inflationary epoch which has a solution that is singular in the scale factor limit a(t) --> 0. When scalar field derivatives are included, a sixth-order differential equation is obtained for the wavefunction and the solution by Mellin transform is regular in the a --> 0 limit. It follows that inclusion of the scalar field in the quadratic gravity action is necessary for consistency of the quantum cosmology of the theory at very early times. [References: 7]
机译:在膨胀时期附近和最初的普朗克时代,从杂散弦的有效作用中得到了二次重力理论的量子宇宙波函数。忽略相对于标量场的导数,波函数将满足膨胀时期附近的三阶微分方程,该方程的解在比例因子极限a(t)-> 0中是奇异的。当包含标量场导数时,获得了波函数的六阶微分方程,并且通过Mellin变换的解在a-> 0极限内是规则的。因此,在很早的时候就必须将标量场包含在二次重力作用中,以保持该理论的量子宇宙学的一致性。 [参考:7]

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