可穿越虫洞量子稳定的理论可能性

IPI Letters Pub Date : 2024-01-25 DOI:10.59973/ipil.47
Olivier Denis
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引用次数: 0

摘要

在本文中,我们认为可以通过量子力学来解释莫里斯-索恩可穿越虫洞的量子稳定问题。我们认为,利用暗物质和暗能量(概念上是与宇宙信息含量相关的负质量和负能量)可以稳定这些虫洞。这种方法与最初的莫里斯-索恩模型不同,它结合了量子效应,为防止虫洞坍塌所需的奇异物质提供了可靠而充足的来源。我们重新评估了虫洞的稳定性和信息含量,考虑到了根据比特信息质量计算出的新修订真空能。这种新的计算方法使得虫洞在我们的宇宙极限内更加可行。此外,我们还探讨了暗能量与空间真空能之间的联系,强调了可穿越虫洞更广泛的宇宙学意义,特别是与宇宙膨胀的关系。莫里斯-索恩可穿越虫洞的量子稳定化标志着物理学领域的一个关键进步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical Possibility of Quantum Stabilization of Traversable Wormholes
In this article, we argue that we can explain quantum stabilization of Morris-Thorne traversable wormholes through quantum mechanics. We suggest that the utilization of dark matter and dark energy, conceptualized as negative mass and negative energy tied to the universe's information content, can stabilize these wormholes. This approach diverges from the original Morris-Thorne model by incorporating quantum effects, offering a credible and adequate source of the exotic matter needed to prevent wormhole collapse. We reassess the wormholes' stability and information content considering the new calculated revised vacuum energy based on the mass of bit of information. This new calculation makes the wormholes more viable within our universe's limits. Furthermore, we explore the connection between dark energy and the vacuum energy of space, highlighting the broader cosmological significance of traversable wormholes, particularly in relation to the universe's expansion. The quantum stabilization of Morris-Thorne traversable wormholes marks a pivotal advancement in the field of physics.
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