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Testing quantum gravity through dumb holes

机译:通过哑孔测试量子重力

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We propose a method to test the effects of quantum fluctuations on black holes by analyzing the effects of thermal fluctuations on dumb holes, the analogs for black holes. The proposal is based on the Jacobson formalism, where the Einstein field equations are viewed as thermodynamical relations, and so the quantum fluctuations are generated from the thermal fluctuations. It is well known that all approaches to quantum gravity generate logarithmic corrections to the entropy of a black hole and the coefficient of this term varies according to the different approaches to the quantnin gravity. It is possible to demonstrate that such logarithmic terms are also generated from thermal fluctuations in dumb holes. In this paper, we claim that it is possible to experimentally test such corrections for dumb holes, and also obtain the correct coefficient for them. This fact can then be used to predict the effects of quantum fluctuations on realistic black holes, and so it can also be used, in principle, to experimentally test the different approaches to quantum gravity. (C) 2016 Elsevier Inc. All rights reserved.
机译:我们提出了一种方法来测试量子波动对黑洞上的效果,通过分析哑铃对哑孔的影响,黑洞的类似物。该提案基于雅各逊形式主义,其中Einstein场方程被视为热力学关系,因此量子波动由热波动产生。众所周知,对量子重力的所有方法产生对数对数校正的黑洞的熵,并且该术语的系数根据与QuantNin重力的不同方法而变化。可以证明这种对数术语也从拒绝孔中的热波动产生。在本文中,我们声称可以通过实验测试哑孔的这种校正,并且还可以获得它们的正确系数。然后可以使用该事实来预测量子波动对现实黑洞的影响,因此也可以原则上使用它来通过实验地测试量子重力的不同方法。 (c)2016年Elsevier Inc.保留所有权利。

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