论文标题

量子非本地性和CMB:实验说的

Quantum Non-Locality and the CMB: what Experiments say

论文作者

Consoli, Maurizio, Pluchino, Alessandro, Zizzi, Paola

论文摘要

“非局部性最自然地纳入了有特殊的参考框架中。这种特殊的参考框架的一个可能候选者是宇宙微波背景(CMB)是各向同性的。但是,除了对量子机制的现实解释外,cmb and cmb and cmb and cmb and cmb and cmb and cmb and came cambe的艰难不足之外,这是一个明显的链接(这是两个明显的链接(like of pecmbe)。从这一说法开始,我们首先认为,鉴于真空的当前观点,量子场理论的基本原则不能保证爱因斯坦没有首选框架的特殊相对论是相对性的物理实现的版本。然后,为了了解假设的首选$σ-$框架的性质,我们考虑了所谓的醚饮用实验,这些实验是那些试图在实验室中检测到的精确的光学测量值,这些测量试图在实验室中检测到光线的小角度依赖性,然后将角度依赖性与直接CMB的依从性与空间中的CMB观察相关。通过考虑到目前为止进行的所有实验,从米歇尔森·莫利(Michelson-Morley)到目前的光学谐振器实验,并分析现代理论框架中观察到的小残留物,长期以来一直在寻找与CMB自然出现的$σ-$框架。最后,如果量子非局部性反映了某种效果,以极大的速度$ v_ {qi} \ to \ infty $传播,则其最终起源可能会隐藏在无限大的速度$ c_s \ to \ infty $中,真空密度波动的波动。

"Non-Locality is most naturally incorporated into a theory in which there is a special frame of reference. One possible candidate for this special frame of reference is the one in which the Cosmic Microwave Background (CMB) is isotropic. However, other than the fact that a realistic interpretation of quantum mechanics requires a preferred frame and the CMB provides us with one, there is no readily apparent reason why the two should be linked" (L. Hardy). Starting from this remark we first argue that, given the present view of the vacuum, the basic tenets of Quantum Field Theory cannot guarantee that Einstein Special Relativity, with no preferred frame, is the physically realized version of relativity. Then, to try to understand the nature of the hypothetical preferred $Σ-$frame, we consider the so called ether-drift experiments, those precise optical measurements that try to detect in laboratory a small angular dependence of the two-way velocity of light and then to correlate this angular dependence with the direct CMB observations with satellites in space. By considering all experiments performed so far, from Michelson-Morley to the present experiments with optical resonators, and analyzing the small observed residuals in a modern theoretical framework, the long sought $Σ-$ frame tight to the CMB naturally emerges. Finally, if quantum non-locality reflects some effect propagating at vastly superluminal speed $v_{QI} \to \infty $, its ultimate origin could be hidden somewhere in the infinitely large speed $c_s \to \infty$ of the vacuum density fluctuations.

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