小于四维的威尔逊量子场论的检验

Y. Tao
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引用次数: 0

摘要

Wilson的小于4维量子场论在临界现象的研究上取得了巨大的成功,但仍未在粒子物理的范围内得到检验。为了保证Wilson量子场论在小于4维的有效性,必须将牛顿-莱布尼茨的微分积分公式推广到非整数维的情况。我们证明了这将导致一个新的预测,即普朗克常数将用三个基本常数来表示:临界时间尺度、时间轴维度和宇宙总能量。我们提出了测量这三个常数的相应方法。因此,将众所周知的普朗克常数值与由三个基本常数组成的潜在理论值进行比较将是一件有趣的事情。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Testing for Wilson’s Quantum Field Theory in Less Than 4 Dimensions
Wilson’s quantum field theory in less than 4 dimensions has achieved a great success in the study of critical phenomenon, but is still not tested within the scope of particle physics. To guarantee the validity of Wilson’s quantum field theory in less than 4 dimensions, Newton-Leibniz’s differential-integral formulas must be extended to the non-integer dimensional situation. We show that this leads to a new prediction that Planck’s constant will be expressed in terms of three fundamental constants: critical time scale, dimension of time axis and total energy of universe. We propose the corresponding methods to measure these three constants. It will be thus interesting to compare the well-known value of Planck’s constant with the potential theoretical value consisting of three fundamental constants.
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