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Influence of atmospheric turbulence on the quantum polarization state

机译:大气湍流对量子极化态的影响

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In order to study the influence of atmospheric turbulence on the polarization state of the free space quantum communication, the relationship between the refractive index and altitude, the refractive index structure constant and the turbulence dimension is deduced based on two different atmospheric refractive index structural constants models. The turbulence intensity factor is introduced and the equation of the variation of the quantum polarization degree with turbulence intensity is established. Through the simulation of the turbulent refractive index and the performance of four different polarization states in the low altitude turbulence environment, the results show that the atmospheric turbulence in the near ground will affect the fluctuation of the degree of polarization, and the degree of polarization varies linearly with the change of turbulence intensity. In the case of polarization |H>, the range of polarization |H> varies from 0 to 0.14 with the change of turbulence intensity. The influence of atmospheric turbulence on four different polarization states is different, and the degree of |H> and |V> depolarization is greater in the daytime and back. The depolarization degree of |-> at night is greater. The relationship between the degree of polarization and the change of turbulence intensity is analyzed by mathematical modeling, which is helpful to select the reasonable experimental scheme and compensate the change of polarization state in the aviation quantum Secure communication channel.
机译:为了研究大气湍流对自由空间量子通信极化态的影响,基于两个不同的大气折射率结构常数模型推导了折射率与高度,折射率结构常数和湍流尺寸之间的关系。 。介绍了湍流强度因子,建立了量子极化度随湍流强度变化的方程。通过对低空湍流环境中湍流折射率和四种不同偏振态性能的模拟,结果表明近地大气湍流会影响偏振度的波动,且偏振度会发生变化。随湍流强度的变化呈线性关系。在极化| H>的情况下,极化范围| H>随湍流强度的变化在0到0.14之间变化。大气湍流对四个不同极化状态的影响是不同的,并且| H>和| V>的去极化程度在白天和白天都更大。晚上|->的去极化度更大。通过数学建模分析了极化度与湍流强度变化之间的关系,有助于选择合理的实验方案,补偿航空量子安全通信信道中极化态的变化。

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