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Time-dependent fluctuations and particle production in cosmological de Sitter and anti-de Sitter spaces

机译:宇宙德西特和反德西特空间中随时间的波动和粒子产生

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We study the evolution of time-dependent fluctuations and particle production in an expanding dS and contracting AdS universe. Using the functional Schr?dinger formalism we are able to probe the time-dependent regime which is out of the reach of the standard approximations like the Bogolyubov method. In both cases, the evolution of fluctuations is governed by the harmonic oscillator equation with time-dependent frequency. In the case of an expanding dS universe we explicitly show that the frequency of fluctuations produced at a certain moment diminish in time, while the distribution of the created particles quickly approaches the thermal radiation of the dS space. In the case of a contracting AdS universe we show that the frequency of fluctuations produced at a certain moment grow in time. Nominally, the temperature of radiation diverges as the Big Crunch is approaching, however, increasing oscillations of the spectrum make the temperature poorly defined, which is in agreement with the fact that AdS space does not have an event horizon which would cause thermal radiation. Unlimited growth of fluctuations indicates that an eventual tunneling into AdS vacuum would have catastrophic consequences for our universe.
机译:我们研究了在不断扩大的dS和收缩的AdS宇宙中随时间变化的波动和颗粒产生的演变。使用功能性薛定er形式主义,我们能够探究时间依赖性机制,这是像Bogolyubov方法这样的标准近似法所无法实现的。在这两种情况下,波动的发展都由具有随时间变化的频率的谐振子方程来控制。在dS宇宙不断扩大的情况下,我们明确表明,在某一时刻产生的波动频率会随时间减小,而所创建粒子的分布会迅速接近dS空间的热辐射。对于缩小的AdS Universe,我们证明了在特定时刻产生的波动频率随时间增长。名义上,辐射的温度随着大紧缩的临近而发散,但是,频谱振荡的增加使温度的定义不明确,这与AdS空间没有会引起热辐射的事件范围的事实相符。波动的无限增长表明最终进入AdS真空的隧道将对我们的宇宙造成灾难性的后果。

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