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Spectral Action for Bianchi Type-IX Cosmological Models

机译:Bianchi IX型宇宙学模型的光谱作用

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摘要

A rationality result previously proved for Robertson-Walker metrics is extended to a homogeneous anisotropic cosmological model, namely the Bianchi type-IX minisuperspace. It is shown that the Seeley-de Witt coefficients appearing in the expansion of the spectral action for the Bianchi type-IX geometry are expressed in terms of polynomials with rational coefficients in the cosmic evolution factors w_1(t), w_2(t), w)3(t), and their higher derivates with respect to time. We begin with the computation of the Dirac operator of this geometry and calculate the coefficients a_0 ,a_2 ,a_4 of the spectral action by using heat kernel methods and parametric pseudodifferential calculus. An efficient method is devised for computing the Seeley-de Witt coefficients of a geometry by making use of Wodzicki’s noncommutative residue, and it is confirmed that the method checks out for the cosmological model studied in this article. The advantages of the new method are discussed, which combined with symmetries of the Bianchi type-IX metric, yield an elegant proof of the rationality result.
机译:先前证明的Robertson-Walker度量的合理性结果扩展到了均质各向异性宇宙学模型,即Bianchi IX型微型超空间。结果表明,Bianchi IX型几何在谱作用扩展中出现的Seeley-de Witt系数用宇宙演化因子w_1(t),w_2(t),w中有理系数的多项式表示)3(t),以及它们的较高时间导数。我们从计算该几何的Dirac算子开始,并通过使用热核方法和参数伪微积分计算谱作用的系数a_0,a_2,a_4。设计了一种有效的方法,可以利用沃兹基的非交换残差来计算几何的Seeley-de Witt系数,并且可以确定该方法可以验证本文研究的宇宙学模型。讨论了该新方法的优点,并结合了Bianchi IX型度量的对称性,为合理性结果提供了优雅的证明。

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