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Gravitomagnetic Fields in Rotating Superconductors to Solve Tate's Cooper Pair Mass Anomaly

机译:旋转超导体的重力磁场解决泰特的Cooper对质量异常

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Superconductors have often been used to claim gravitational anomalies in the context of breakthrough propulsion. The experiments could not be reproduced by others up to now, and the theories were either shown to be wrong or are often based on difficult to prove assumptions. We will show that superconductors indeed could be used to produce non-classical gravitational fields, based on the established disagreement between theoretical prediction and measured Cooper-pair mass in Niobium. Tate et al failed to measure the Cooper-pair mass in Niobium as predicted by quantum theory. This has been discussed in the literature without any apparent solution. Based on the work from DeWitt to include gravitomagnetism in the canonical momentum of Cooper-pairs, the authors published a number of papers discussing a possibly involved gravitomagnetic field in rotating superconductors to solve Tate's measured anomaly. Although one possibility to match Tate's measurement, a number of reasons were developed by the authors over the last years to show that the gravitomagnetic field in a rotating quantum material must be different from its classical value and that Tate's result is actually the first experimental sign for it. This paper reviews the latest theoretical approaches to solve the Tate Cooper-pair anomaly based on gravitomagnetic fields in rotating superconductors.
机译:超导体经常用于在突破推进的背景下要求引力异常。目前无法通过其他人再现实验,并且理论要么被证明是错误的,或者通常是基于难以证明的假设。我们将表明,超导体确实可用于生产非古典的重力领域,基于铌的理论预测和测量的基核群体之间的既定分歧。 Tate等人未能测量量子理论所预测的铌中的基铜对质量。这已经在文献中讨论而没有任何明显的解决方案。基于Dewitt的工作包括在Cooper-对的规范动量中包括Gravitomagnistic,作者发表了许多论文讨论了旋转超导体中可能涉及的引力磁场,以解决Tate的测量异常。虽然可以匹配泰特的测量的一种可能性,但是,作者在过去几年中开发了许多原因,以表明旋转量子材料中的重力磁场必须与其经典价值不同,并且泰特结果实际上是第一个实验标志它。本文综述了基于旋转超导体中的重力磁场解决Tate Cooper-α异常的最新理论方法。

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