量子力学中的一种波系理论

Thomas B. Andrews
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引用次数: 3

摘要

由于量子力学存在严重的解释问题,这些问题在量子力学理论中尚未得到解决,因此提出了一种新的基础物理方法。基本粒子被假设为延伸到整个宇宙的波系统的建设性干涉峰。结果表明,当波模相干涉时,波系处于最低能量状态。因此,干涉峰是稳定的实体,因为任何建设性干涉的减少都会提高系统的能量。Schrödinger方程是基于经典波动方程的洛伦兹不变性,在相干涉峰与波模保持同相的条件下,从波系中导出的。此外,还对双缝干涉实验结果进行了逻辑解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A wave system theory of quantum mechanics

Because quantum mechanics has severe interpretational problems which have not been resolved within the theory of quantum mechanics, a new approach to basic physics is proposed. Elementary particles are hypothesized to be the constructive interference peaks of a wave system extending throughout the universe. It is then shown that the wave system is in the lowest energy state when the wave modes constructively interfere. Consequently, the interference peaks are stable entities since any reduction in the constructive interference would raise the energy of the system. The Schrödinger equation is derived from the wave system based on the Lorentz invariance of the classical wave equation subject to the condition that the constructive interference peaks remain in-phase with the wave modes. In addition, the results of the two-slit interference experiment are logically explained.

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