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A novel view on successive quantizations, leading to increasingly more 'miraculous' states

机译:一篇关于连续量化的新颖观点,导致越来越多的“神奇”状态

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A series of successive quantizations is considered, starting with the quantization of a non-relativistic or relativistic point particle: (1) quantization of a particle's position, (2) quantization of wave function, (3) quantization of wave functional. The latter step implies that the wave packet profiles forming the states of quantum field theory are themselves quantized, which gives new physical states that are configurations of configurations. In the procedure of quantization, instead of the Schrodinger first-order equation in time derivative for complex wave function (or functional), the equivalent second-order equation for its real part was used. In such a way, at each level of quantization, the equation a quantum state satisfies is just like that of a harmonic oscillator, and wave function(al) is composed in terms of the pair of its canonically conjugated variables.
机译:考虑了一系列连续的量化,从非相对论或相对论点颗粒的量化开始:(1)粒子位置的量化,(2)波函数的量化,(3)波函数的量化。 后一步意味着形成量子场理论状态的波分组曲线本身是量化的,这为是配置配置的新的物理状态。 在量化的过程中,代替复杂波函数(或功能)的时间衍生中的Schrodinger一阶方程,使用其实体部分的等效二阶方程。 以这样的方式,在每个量化水平中,等式量子状态满足于谐波振荡器的等式,并且波函数(Al)由其粗大共轭变量的一对术语组成。

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