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Spacetime Foam: From Entropy and Holography to Infinite Statistics and Nonlocality

机译:时空泡沫:从熵和全息到无限统计和非局域性

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摘要

Due to quantum fluctuations, spacetime is foamy on small scales. The degree of foaminess is found to be consistent with holography, a principle prefigured in the physics of black hole entropy. It has bearing on the ultimate accuracies of clocks and measurements and the physics of quantum computation. Consistent with existing archived data on active galactic nuclei from the Hubble Space Telescope, the application of the holographic spacetime foam model to cosmology requires the existence of dark energy which, we argue, is composed of an enormous number of inert “particles" of extremely long wavelength. We suggest that these “particles" obey infinite statistics in which all representations of the particle permutation group can occur, and that the nonlocality present in systems obeying infinite statistics may be related to the nonlocality present in holographic theories. We also propose to detect spacetime foam by looking for halos in the images of distant quasars, and argue that it does not modify the GZK cutoff in the ultra-high energy cosmic ray spectrum and its contributions to time-of-flight differences of high energy gamma rays from distant GRB are too small to be detectable.
机译:由于量子涨落,时空在小范围内呈泡沫状。发现泡沫程度与全息术一致,全息术是黑洞熵物理学中预先确定的原理。它关系到时钟和测量的最终精度以及量子计算的物理学。与哈勃太空望远镜现有的有关活跃银河核的存档数据相一致,全息时空泡沫模型在宇宙学中的应用要求存在暗能量,我们认为暗能量由大量极长的惰性“粒子”组成我们建议这些“粒子”服从无限统计,其中可以出现粒子排列组的所有表示形式,并且服从无限统计的系统中存在的非局部性可能与全息理论中存在的非局部性有关。我们还建议通过在遥远的类星体的图像中寻找光晕来检测时空泡沫,并认为它不会改变超高能宇宙射线光谱中的GZK截止及其对高能飞行时间差的贡献来自遥远GRB的伽马射线太小而无法检测到。

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  • 来源
    《Entropy》 |2008年第4期|共21页
  • 作者

    Y. Jack Ng;

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  • 中图分类 生理学;
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