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Pure states, mixed states and Hawking problem in generalized quantum mechanics

机译:广义量子力学中的纯态,混合态和霍金问题

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This paper is the continuation of a study into the information paradox problem started by the author in his earlier works. As before, the key instrument is a deformed density matrix in quantum mechanics of the early universe. It is assumed that the latter represents quantum mechanics with fundamental length. It is demonstrated that the obtained results agree well with the canonical viewpoint that in the processes involving black holes pure states go to the mixed ones in the assumption that all measurements are performed by the observer in a well-known quantum mechanics. Also it is shown that high entropy for Planck's remnants of black holes appearing in the assumption of the generalized uncertainty relations may be explained within the scope of the density matrix entropy introduced by the author previously. It is noted that the suggested paradigm is consistent with the holographic principle. Because of this, a conjecture is made about the possibility for obtaining the generalized uncertainty relations from the covariant entropy bound at high energies in the same way as Bousso has derived Heisenberg's uncertainty principle for the flat space.
机译:本文是作者早期工作中对信息悖论问题的研究的延续。和以前一样,关键仪器是早期宇宙量子力学中的变形密度矩阵。假定后者代表具有基本长度的量子力学。结果表明,所获得的结果与经典观点非常吻合:在涉及黑洞的过程中,假定所有测量均由观察者以众所周知的量子力学进行的,则纯态变为混合态。还表明,在广义不确定性关系的假设下出现的黑洞的普朗克残余物的高熵可以在作者先前引入的密度矩阵熵的范围内进行解释。注意,建议的范例与全息原理是一致的。因此,与以Bousso为平面空间推导Heisenberg的不确定性原理相同的方式,对从高能协方差熵获得广义不确定性关系的可能性进行了推测。

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