论文标题
二进制黑洞信息损失悖论和未来前景
Binary Black Hole Information Loss Paradox & Future Prospects
论文作者
论文摘要
已经提出了各种解决黑洞信息悖论的技术。解决悖论的一种新方法是使用伪密度操作员。这种方法已成功处理了一个黑洞的两个Qubit纠缠系统的问题。在本文中,我们使用格林伯格·霍恩林格(GHZ)状态的三个Qubit系统的布置介绍了与二进制黑洞系统的相互作用。我们表明,我们的结果与理论价值非常吻合。我们还通过考虑二进制黑洞系统中的量子位之间的相关性来研究两个黑洞之间的相互作用。结果描述了与所提出的模型的完整协议。除了验证外,我们还提出了如何在光学设置上将重力波的现代检测用作输入源,从而在研究黑洞性能相对于量子信息和纠缠方面,将间隙与引力波的观察力资源桥接。
Various techniques to tackle the black hole information paradox have been proposed. A new way out to tackle the paradox is via the use of a pseudo-density operator. This approach has successfully dealt with the problem with a two qubit entangle system for a single black hole. In this paper, we present the interaction with a binary black hole system by using an arrangement of the three qubit system of Greenberger Horne Zeilinger (GHZ) state. We show that our results are in excellent agreement with the theoretical value. We have also studied the interaction between the two black holes by considering the correlation between the qubits in the binary black hole system. The results depict a complete agreement with the proposed model. In addition to the verification, we also propose how modern detection of gravitational waves can be used on our optical setup as an input source, thus bridging the gap with the gravitational wave's observational resources in terms of studying black hole properties with respect to quantum information and entanglement.