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Eternal inflation, black holes, and the future of civilizations

机译:永恒的通货膨胀,黑洞与文明的未来

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摘要

We discuss the large-scale structure of the universe in inflationary cosmology and the implications that it may have for the long-term future of civilizations. Although each civilization is doomed to perish, it may be possible to transmit its accumulated knowledge to future civilizations. We consider several scenarios of this sort. If the cosmological constant is positive, it eventually dominates the universe and bubbles of inflationary phase begin to nucleate at a constant rate. Thermalized regions inside these inflating bubbles will give rise to new galaxies and civilizations. It is possible in principle to send a message to one of them. it might even be possible to send a device whose purpose is to recreate an approximation of the original civilization in the new region. However, the message or device will almost certainly be intercepted by black holes, which nucleate at a much higher rate than inflating bubbles. Formation of new inflating regions can also be triggered by gravitational collapse, but again the probability is low, and the number of attempts required for a positive outcome is enormous. The probability can be higher if the energy scale of inflation is closer to the Planck scale, bur a high energy scale produces a tight bound on the amount of information that can be transmitted. One can try to avoid quantum tunneling altogether, but this requires a violation of quantum inequalities which constrain the magnitude of negative energy densities. However the limits of validity of quantum inequalities are not clear, and future research may show that the required violation is in fact possible. Therein lies the hope for the future of civilizations. [References: 28]
机译:我们讨论了通货膨胀宇宙学中宇宙的大规模结构及其对文明的长期未来的影响。尽管每个文明注定要灭亡,但有可能将其积累的知识传播给未来的文明。我们考虑了几种这种情况。如果宇宙学常数为正,则它最终将主导宇宙,膨胀阶段的气泡开始以恒定的速率成核。这些膨胀气泡内部的热区将产生新的星系和文明。原则上可以向其中一个发送消息。甚至有可能发送一种设备,其目的是在新区域中重新创建原始文明的近似图像。但是,消息或设备几乎肯定会被黑洞拦截,黑洞的成核速率比膨胀气泡高得多。新的膨胀区域的形成也可以由重力坍塌触发,但是再次发生的可能性很低,而且取得积极成果所需的尝试次数也很大。如果通货膨胀的能量尺度更接近于普朗克尺度,则概率可能更高,但高能量尺度会在可传输的信息量上产生严格的界限。可以尝试完全避免量子隧穿,但是这需要克服限制负能量密度大小的量子不等式。但是,量子不等式的有效性界限尚不明确,未来的研究可能表明所要求的违反实际上是可能的。这里蕴含着对文明未来的希望。 [参考:28]

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