Quantum-Mechanical Description of Physical Reality Shall Be Considered Complete

Z. Bo
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引用次数: 2

Abstract

After the deduction and comparison of wave motions of classical particles and quantum particles, we prove that there are two restrictions applied to both classical particles and quantum particles. Both restrictions are just to ensure energy conservation principle of the wave motion. The Heisenberg’s famous inequality was nothing to do with the measurements of particle’s position or mentum, the restriction of the inequality is just the lower limit of the wave motion. His uncertainty principle was not correct from both mathematical and physical perspective. Based on the mathematic analysis and logic reasoning process review, we conclude that all the Heisenberg’s uncertainty principle, Born rule and Bohr’s complimentary principle were not correct. Even for a quantum particle, at any time, it must be classically localized instead of non-local. Without the Copenhagen interpretations, the quantum mechanics shall still be considered complete according to EPR’s criteria which are used to verify the completeness of a physics theory. The particle-wave duality of quantum particles comes from their inner features of electric vector(s).
物理实在的量子力学描述应该被认为是完整的
通过对经典粒子和量子粒子的波动进行推导和比较,证明了经典粒子和量子粒子都存在两个限制条件。这两个限制都是为了保证波动的能量守恒原理。著名的海森堡不等式与粒子位置或动量的测量无关,该不等式的限制条件只是波动的下限。他的测不准原理在数学和物理上都是不正确的。通过数学分析和逻辑推理过程回顾,得出海森堡测不准原理、玻恩定则和玻尔互补原理均不正确的结论。即使对于量子粒子,在任何时候,它也必须是经典定域的,而不是非定域的。没有哥本哈根解释,根据EPR的标准,量子力学仍然被认为是完备的,EPR是用来验证物理理论的完备性的。量子粒子的粒波二象性来源于其电矢量的内部特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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