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Photon wave mechanics in the eikonal limit: Diamagnetic field-plasma interaction

机译:常规极限中的光子波力学:反磁场-等离子体相互作用

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A microscopic eikonal theory based on photon wave mechanics is established. The diamagnetic (solid state) field-plasma interaction is shown to play a central role in the theory, and this interaction enables one to introduce a massive transverse photon concept. This quasi-particle enters the eikonal theory in manner similar to the one in which the classical point particle enters Newtonian Mechanics in the Hamilton-Jacobi formulation. When the spatial fluctuations in the stationary-state plasma density are of importance the microscopic eikonal theory becomes a spatially nonlocal theory, and the nonlocality, originating in the coupling of longitudinal and scalar photons to the massive transverse photon, extends over near-field distances.
机译:建立了基于光子波力学的微观微观理论。反磁性(固态)场-等离子体相互作用在理论中显示出核心作用,这种相互作用使人们能够引入巨大的横向光子概念。这种准粒子以类似于经典点粒子以汉密尔顿-雅各比公式进入牛顿力学的方式进入本征理论。当稳态等离子体密度的空间波动很重要时,微观本征理论变成了空间非局部理论,并且非局部性起源于纵向和标量光子与大量横向光子的耦合,并延伸到近场距离。

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