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Search for tracker potentials in quintessence theory

机译:在精粹理论中寻找追踪者的潜力

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摘要

We report a significant finding in quintessence theory that scalar fields with tracker potentials have a model-independent scaling behaviour in the expanding universe. So far, widely discussed exponential, power law or hyperbolic potentials can simply mimic the tracking behaviour over a limited range of redshift. A new version of the tracker field theory is proposed and it is shown that in the small redshift range where the variation of the tracking parameter c may be taken to be negligible, the differential equation of generic potentials leads to hyperbolic sine and hyperbolic cosine potentials which may approximate a tracker field in the present-day universe. We have plotted the variation of the tracker potential and the equation of state of the tracker field as a function of the redshift z for the model-independent relation derived from tracker field theory; we have also plotted the variation of V (Phi) in terms of the scalar field Phi for the chosen hyperbolic cosine function and have compared it with the curves obtained by the reconstruction of V (Phi) from real observational data from the supernovae. [References: 33]
机译:我们报告了精粹理论中的一项重大发现,即具有跟踪器势的标量场在扩展的宇宙中具有与模型无关的缩放行为。到目前为止,广泛讨论的指数势,幂定律或双曲线势能仅在有限的红移范围内模拟跟踪行为。提出了跟踪器场理论的新版本,它表明,在较小的红移范围内,跟踪参数c的变化可以忽略不计,通用势的微分方程导致双曲正弦和双曲余弦势。可以近似于当今宇宙中的跟踪器字段。对于从跟踪器场理论推导的与模型无关的关系,我们绘制了跟踪器电位的变化和跟踪器场的状态方程作为红移z的函数。我们还针对所选的双曲余弦函数绘制了标量场Phi的V(Phi)的变化,并将其与通过从超新星的真实观测数据重建V(Phi)所获得的曲线进行了比较。 [参考:33]

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