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Quantum Nature of Distortion and Delay of Satellite Signals II

机译:卫星信号失真和延迟的量子性质II

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A detailed analysis of the influence of Rydberg states to the behavior of GPS satellite signals in the D and E atmospheric layers has been carried out. It is demonstrated that these states are the main reason for the GPS signal distortion. It is shown that the behavior of satellite signals is associated with the spectral characteristics of the UHF radiation of the Rydberg states depending on the geomagnetic conditions of ionosphere. The foundations of the quantum theory of distortion and delay of GPS satellite signal propagation through D and E atmospheric layers are analyzed and expounded. The problem reduces to the resonant scattering of photons, moving in the electromag netic field of the signal, to the Rydberg complexes populated in a two-temperature non-equilibrium plasma. The processes of creation of additional photons because of stimulated emission and resonance scattering of photons are considered. In the present work, the quantum theory of the propagation of a satellite signal in the Earth’s upper atmosphere, firstly earlier proposed by the same authors, is described in detail. The general problems of the theory and possible theoretical and applied consequences are discussed. It is explained that two main processes occurring here, are directly related to the resonant quantum properties of the propagation medium. The first process leads to a direct increase in the power of the received signal, and second—to a shift in the signal carrier frequency? ? and the time delay? ? of its propagation. The main reasons of the processes are scattering of the Rydberg electron by the ion core and presence of the neutral medium molecule in the intermediate autoionization states of the composite system populated by the strong non-adiabatic coupling of electron and nuclear motions. The main purposes of our investigation are the physical justification of the formation of parameters ? and? ? using the quantum dynamics of the electron behavior in the intermediate state of the Rydberg complex A**M and the estimation of the quantities of? ? and? ? in the elementary act of elastic (Rayleigh) photon scattering.
机译:已经对里德伯格状态对D和E大气层中GPS卫星信号行为的影响进行了详细分析。事实证明,这些状态是GPS信号失真的主要原因。结果表明,取决于电离层的地磁条件,卫星信号的行为与里德堡州的UHF辐射的光谱特性有关。分析和阐述了GPS卫星信号通过D和E大气层传播的失真和延迟的量子理论的基础。该问题减少到在信号的电磁场中移动的光子的共振散射,并扩散到在两个温度的非平衡等离子体中分布的里德堡络合物。考虑了由于光子的受激发射和共振散射而产生附加光子的过程。在当前的工作中,详细描述了同一作者首先提出的关于卫星信号在地球高层大气中传播的量子理论。讨论了该理论的一般问题以及可能的理论和应用后果。可以解释,这里发生的两个主要过程与传播介质的共振量子特性直接相关。第一个过程导致接收信号功率的直接增加,第二个过程导致信号载频的偏移? ?和时间延迟? ?传播。该过程的主要原因是离子核对里德堡电子的散射以及在电子和核运动的强非绝热耦合构成的复合系统的中间自电离态下,中性介质分子的存在。我们研究的主要目的是参数形成的物理合理性?和? ?利用Rydberg配合物A ** M的中间态的电子行为的量子动力学和α量的估计。 ?和? ?弹性(瑞利)光子散射的基本行为。

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