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Black holes as critical point of quantum phase transition

机译:黑洞是量子相变的临界点

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摘要

We reformulate the quantum black hole portrait in the language of modern condensed matter physics. We show that black holes can be understood as a graviton Bose–Einstein condensate at the critical point of a quantum phase transition, identical to what has been observed in systems of cold atoms. The Bogoliubov modes that become degenerate and nearly gapless at this point are the holographic quantum degrees of freedom responsible for the black hole entropy and the information storage. They have no (semi)classical counterparts and become inaccessible in this limit. These findings indicate a deep connection between the seemingly remote systems and suggest a new quantum foundation of holography. They also open an intriguing possibility of simulating black hole information processing in table-top labs.
机译:我们用现代凝聚态物理的语言重新构造了量子黑洞肖像。我们表明,黑洞可以理解为是量子相变临界点处的引力子玻色-爱因斯坦凝聚物,与冷原子系统中观察到的相同。 Bogoliubov模在此时变得简并几乎是无间隙的是负责黑洞熵和信息存储的全息量子自由度。他们没有(半)古典的对应物,因此在此限制下无法访问。这些发现表明看似遥远的系统之间有着深厚的联系,并提出了全息术的新量子基础。他们还为在台式实验室中模拟黑洞信息处理提供了一种有趣的可能性。

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