论文标题
宇宙扩张,物质创造和散装粘度
Cosmic expansion with matter creation and bulk viscosity
论文作者
论文摘要
我们探讨了在耗散液中的有效水平产生物质产生效果的宇宙学含义。我们还针对这种模型执行统计分析。通过考虑粒子生产率的不均匀的ANSATZ,我们可以获得有关暗物质类型的物质,我们可以具有典型的场景或未来的奇异性,称为Little Rip;依赖恒定参数的值,$η$,这表征了物质生产效应。计算了这种宇宙的无量纲年龄,表明该数字大于标准宇宙学值,这是宇宙中典型的黑暗能量。研究了重型物质。通过考虑两种表达散装粘性压力的方法,通过实施耗散液的颗粒生产率的构建;我们发现,在ECKART模型中,我们具有很大的裂纹奇异性,导致灾难性物质生产,在以色列 - 史图尔特模型的截断版本中,这种速率仍然有限,导致了典型的情况。对于非绝热耗散液,我们获得正温度,宇宙膨胀遵守热力学的第二定律。
We explore the cosmological implications at effective level of matter creation effects in a dissipative fluid for a FLRW geometry; we also perform a statistical analysis for this kind of model. By considering an inhomogeneous Ansatz for the particle production rate we obtain that for created matter of dark matter type we can have a quintessence scenario or a future singularity known as little rip; in dependence of the value of a constant parameter, $η$, which characterizes the matter production effects. The dimensionless age of this kind of Universe is computed, showing that this number is greater than the standard cosmology value, this is typical of universes with presence of dark energy. The inclusion of baryonic matter is studied. By implementing the construction of the particle production rate for a dissipative fluid by considering two approaches for the expression of the bulk viscous pressure; we find that in Eckart model we have a big rip singularity leading to a catastrophic matter production and in the truncated version of the Israel-Stewart model such rate remains bounded leading to a quintessence scenario. For a non adiabatic dissipative fluid, we obtain a positive temperature and the cosmic expansion obeys the second law of thermodynamics.