论文标题
通过真空铺路
Paving Through the Vacuum
论文作者
论文摘要
使用真空填充的模型,我们提出了与波粒二元性和量子场理论兼容光子传播的有效描述。 在该模型中,真空介电常数和渗透率的起源自然出现在虚拟对气体的统计描述中。假设在温度下的热平衡中的虚拟气体对应于Higgs场真空期望值,则$ kt \ oft246.22 \,\ rm {gev} $,真空磁性磁化率(磁性常数)的推导值以相同的实验值的顺序出现。使该模型具有吸引力的功能之一是,光速传播速度的预期波动,该速度在$σ\ of 1.9 \,\ mathrm {as \,m}^{ - 1/2} $的水平上。可用的技术可以达到这种非经典的光传播特性。
Using the model in which the vacuum is filled with virtual fermion pairs we propose an effective description of photon propagation compatible with the wave-particle duality and the quantum field theory. In this model the origin of the vacuum permittivity and permeability appear naturally in the statistical description of the gas of the virtual pairs. Assuming virtual gas in thermal equilibrium at temperature corresponding to the Higgs field vacuum expectation value, $kT\approx246.22\, \rm{GeV}$, the deduced value of the vacuum magnetic permeability (magnetic constant) appears on the same order of the experimental value. One of the features that makes this model attractive is the expected fluctuation of the speed of light propagation that is at the level of $σ\approx 1.9\,\mathrm{as\,m}^{-1/2}$. This non-classical light propagation property is reachable with the available technologies.