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Gauge-invariant dynamical quantities of QED with decomposed gauge potentials

机译:具有分解的标称电位的QED的量规不变动力学量

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We discover an inner structure of theQED system; i.e., by decomposing the gauge potential into two orthogonal components, we obtain a new expansion of the Lagrangian for the electron-photon system, from which, we realize the orthogonal decomposition of the canonical momentum conjugate to the gauge potential with the canonical momentum’s two components conjugate to the gauge potential’s two components, respectively. Using the new expansion of Lagrangian and by the general method of field theory, we naturally derive the gauge invariant separation of the angular momentum of the electron-photon system from Noether theorem, which is the rational one and has the simplest form in mathematics, compared with the other four versions of the angular momentum separation available in literature. We show that it is only the longitudinal component of the gauge potential that is contained in the orbital angular momentum of the electron, as Chen et al. have said. A similar gauge invariant separation of the momentum is given. The decomposed canonical Hamiltonian is derived, from which we construct the gauge invariant energy operator of the electron moving in the external field generated by a proton [Phys. Rev. A 82, 012107 (2010)], where we show that the form of the kinetic energy containing the longitudinal part of the gauge potential is due to the intrinsic requirement of the gauge invariance. Our method provides a new perspective to look on the nucleon spin crisis and indicates that this problem can be solved strictly and systematically.
机译:我们发现了QED系统的内部结构;也就是说,通过将标称势分解为两个正交分量,我们得到了电子-光子系统的拉格朗日展开式,由此实现了规范动量与规范势共轭的规范动量的两个分量的正则动量的正交分解。分别与标称电位的两个分量共轭。使用拉格朗日的新展开并通过一般的场论方法,我们自然地从Noether定理推导出了电子-光子系统角动量的轨距不变分离,该定理是有理的,并且在数学上具有最简单的形式,文献中提供了角动量分离的其他四个版本。我们证明,电子的轨道角动量中仅包含表层电势的纵向分量,如Chen等人所述。讲过了。给出了动量的类似量规不变分离。推导分解的典型哈密顿量,从中我们构造质子产生的外场中移动的电子的规范不变能量算子。 Rev. A 82,012107(2010)],其中我们表明包含轨距电势纵向部分的动能形式是由于轨距不变性的内在要求。我们的方法为研究核子自旋危机提供了新的视角,表明该问题可以得到严格而系统的解决。

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