首页> 外文期刊>Foundations of Physics: An International Journal Devoted to the Conceptual Bases and Fundamental Theories of Modern Physics, Biophysics & Cosmology >A Relativistic Hidden-Variable Interpretation for the Massive Vector Field Based on Energy-Momentum Flows
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A Relativistic Hidden-Variable Interpretation for the Massive Vector Field Based on Energy-Momentum Flows

机译:基于能量动量流的大规模矢量场的相对论隐式变量解释

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摘要

This paper is motivated by the desire to formulate a relativistically covariant hidden-variable particle trajectory interpretation of the quantum theory of the vector field that is formulated in such a way as to allow the inclusion of gravity. We present a methodology for calculating the flows of rest energy and a conserved density for the massive vector field using the time-like eigenvectors and eigenvalues of the stress-energy-momentum tensor. Such flows may be used to define particle trajectories which follow the flow. This work extends our previous work which used a similar procedure for the scalar field. The massive, spin-one, complex vector field is discussed in detail and the flows of energy-momentum are illustrated in a simple example of standing waves in a plane.
机译:本文的动机是希望对矢量场的量子理论建立相对论的协变隐变量粒子轨迹解释,该解释以允许包含重力的方式制定。我们提出了一种方法,使用时态特征向量和应力-能量-动量张量的特征值来计算大量矢量场的静能量流和守恒密度。这样的流可用于定义跟随该流的粒子轨迹。这项工作扩展了我们先前的工作,该工作对标量字段使用了类似的过程。详细讨论了巨大的自旋,复数矢量场,并以平面中驻波的简单示例说明了能量动量的流动。

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