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Quantum Vacuum and the Structure of Empty Space-Time

机译:量子真空和空的空间时间的结构

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We have considered the possibility of formation of a massless particles with spin 1 in the region of negative energies, within the framework of the Weyl-type equation for neutrinos. It is proved that the represented approach allows to get a stable structural formation in the ground state, which can be interpreted as a fundamental massless particle. The structure and properties of this vector boson are studied in detail. The problem of entangling two vector bosons with projections of spins +1 and -1 and, accordingly, the formation of a zero-spin boson is studied within the framework of a complex stochastic matrix equations of the Langevin type. The paper discusses the structure of the Bose particle of a scalar field and the space-time properties of an empty space (quantum vacuum).
机译:我们已经考虑了在NeyRinos的Weyl型方程的框架内与负极的区域中形成无麻自动颗粒的可能性。 证明所代表的方法允许在地状态下获得稳定的结构形成,其可以被解释为基本的无麻颗粒。 详细研究了该载体玻体的结构和性质。 缠绕两个旋转旋转+1和-1凸起的缠绕的问题的问题,并在兰富仑类型的复杂随机矩阵方程的框架内研究了零旋转玻色子的形成。 本文讨论了标量场的母粒子的结构和空空间的时空性能(量子真空)。

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