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Quadratic reheating

机译:二次加热

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摘要

The reheating process for the inflationary scenario is investigated phenomenologically. The decay of the oscillating massive inflaton field into light bosons is modeled after an out of equilibrium mixture of interacting fluids within the framework of irreversible thermodynamics. Self-consistent, analytic results for the evolution of the main macroscopic magnitudes like temperature and particle number densities are obtained. The models for linear and quadratic decay rates are investigated in the quasiperfect regime. The linear model is shown to reheat very slowly while the quadratic one is shown to yield explosive particle and entropy production. The maximum reheating temperature is reached much faster and its magnitude is comparable with the inflaton mass.
机译:对通货膨胀情景的再加热过程进行了现象学的研究。在不可逆的热力学框架内相互作用流体的不平衡混合物之后,模拟了振荡的大型充气子场衰减为玻色子。获得了诸如温度和粒子数密度之类的主要宏观量的演化的自洽分析结果。在拟完美状态下研究了线性和二次衰减率模型。线性模型显示出非常缓慢的再加热,而二次模型显示出爆炸性粒子和熵的产生。达到最高再加热温度要快得多,并且其大小可与胀气质量相比。

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