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Superfluid vacuum theory and deformed dispersion relations

机译:超流式真空理论和变形分散关系

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摘要

Using the logarithmic superfluid model of physical vacuum, one can formulate an essentially quantum post-relativistic theory, which successfully recovers Einstein's theory of relativity in low-momenta limit, but otherwise has different foundations and predictions. We present an analytical example of the dispersion relation and show that it should have a Landau form which ensures the suppression of dissipative fluctuations. We show that in the low-momentum sector of the theory, a dispersion relation becomes relativistic with small deformations, such that a photon acquires effective mass, but a much more complex picture arises at large momenta.
机译:使用物理真空的对数超流模型,可以制定基本上Quantum的相关性理论,该理论成功地恢复了Einstein在低动态限制中的相对论的理论,但其他基础和预测不同。 我们介绍了分散关系的分析示例,并表明它应该具有确保抑制耗散波动的Landau形式。 我们表明,在理论的低动量扇区中,色散关系变得具有小变形的相对论,使得光子获取有效质量,但是在大的动态下出现了更复杂的图像。

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