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Quantum measurement in dual-four-dimensional space-time quantum mechanics

Author: 
Guoqiu-Zhao
Subject Area: 
Physical Sciences and Engineering
Abstract: 

Using literature (11) (12) (13) (14) we proved that quantum mechanics describes in dual four- dimensional space-time w(x,k), matter waves are physical wave, parallel quantum state is the product of the quantum segment. Measuring micro object before and after physical space has changed. Many key basic knowledge are concentrated here. For example, double-slit experiment, delayed choice experiment, the Schrodinger cat paradox, and the non-local quantum communication all are controversial problems today. We think that energy of macro instrument itself is continuous changeable and there is no energy level transition, no constant phase difference. So the instrument itself is of mixed stated and there is no coherence. According to our understanding, Mixed state form is pure states noncoherent hybrid, but mixed state is a product of measurement. Quantum measurement can induce continuous interaction, so one of the mixture states, namely a pure state becomes the collapsed eigenvalue corresponding state during the measurement. There is no constant phase difference in each mixture states, thus there is no energy quantization. The mixture states is not in w(x,k) space but in M4(x) space. The physical model is changing from field matter sphere model to mass point model and the physical wave is changing to be probability wave, though the probability wave function has the same form as matter wave. We will discussion about these problems in dual four dimensional quantum mechanics.

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