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Noncommutative Friedmann equations in effective LQC

机译:有效LQC中的非容性Friedmann方程

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摘要

In this work, we construct a noncommutative version of the Friedmann equations in the framework of effective loop quantum cosmology, extending and applying the ideas presented in a previous proposal by some of the authors. The model under consideration is a flat FRW spacetime with a free scalar field. First, noncommutativity in the momentum sector is introduced. We establish the noncommutative equations of motion and obtain the corresponding exact solutions. Such solutions indicate that the bounce is preserved, in particular, the energy density is the same as in the standard LQC. We also construct an extension of the modified Friedmann equations arising in effective LQC which incorporates corrections due to noncommutativity, and argue that an effective potential is induced. This, in turn, leads us to investigate the possibility of an inflationary era. Finally, we obtain the Friedmann and the Raychaudhuri equations when implementing noncommutativity in the configuration sector. In this case, no effective potential is induced.
机译:在这项工作中,我们在有效的环路量子宇宙学中构建了Friedmann方程的非矫正版本,扩展和应用了一些作者以前提出的想法。正在考虑的模型是具有免费标量场的平坦FRW时空。首先,介绍了势头的非组织行业。我们建立了运动的非态度方程,获得了相应的精确解决方案。这种解决方案表明,特别是能量密度与标准LQC中相同的反弹。我们还构建了有效LQC中产生的改进的Friedmann方程的延伸,该方程包含由于非传闻而导致的校正,并且旨在诱导有效潜力。反过来,这导致我们调查通货膨胀时代的可能性。最后,当在配置扇区中实施非流动性时,我们获得Friedmann和Raychaudhuri方程。在这种情况下,诱导有效的潜力。

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