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On Heisenberg Uncertainty Relationship, Its Extension, and the Quantum Issue of Wave-Particle Duality

机译:海森堡不确定性关系,它的扩展以及波粒对偶性的量子问题

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摘要

Within the path integral Feynman formulation of quantum mechanics, the fundamental Heisenberg Uncertainty Relationship (HUR) is analyzed in terms of the quantum fluctuation influence on coordinate and momentum estimations. While introducing specific particle and wave representations, as well as their ratio, in quantifying the wave-to-particle quantum information, the basic HUR is recovered in a close analytical manner for a large range of observable particle-wave Copenhagen duality, although with the dominant wave manifestation, while registering its progressive modification with the factor 1-n2, in terms of magnitude n∈[0,1]. of the quantum fluctuation, for the free quantum evolution around the exact wave-particle equivalence. The practical implications of the present particle-to-wave ratio as well as of the free-evolution quantum picture are discussed for experimental implementation, broken symmetry and the electronic localization function.
机译:在量子力学的路径积分费恩曼公式中,根据量子涨落对坐标和动量估计的影响,分析了基本的海森堡不确定性关系(HUR)。在引入特定的粒子和波表示形式及其比率时,在量化波对粒子量子信息时,基本的HUR以紧密的分析方式被回收用于可观察到的粒子波哥本哈根二重性,尽管主波表现,同时将其渐进式修改记录为因子1-n2,其幅度为n∈[0,1]。对于精确的波粒等效当量附近的自由量子演化,它是量子涨落的函数。讨论了当前粒子波比以及自由进化量子图片的实际意义,以用于实验实现,对称性破坏和电子定位功能。

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  • 作者

    Putz, Mihai V.;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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