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Impact of Half-Angles on the Transmission of Terahertz Wave in Inhomogeneous Plasma Sheath

机译:半角对非均相等离子体鞘中太赫兹波传输的影响

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Terahertz communication is considered as a potential solution to alleviate the communication blackout. However, it is not clear how the shape parameters of the vehicle affect the propagation of terahertz communications in the plasma sheath. In this article, the influence of half-angle on the plasma flow and terahertz propagation characteristics around blunt cone vehicle was investigated using the numerical hypersonic hydrodynamic model and multilayer transmission model. The maximum electron number density in the plasma sheath near the antenna decreases with the decreasing half-angle. The thickness of the high-density section in the plasma sheath is almost unaffected by the half-angle. As a result, the terahertz wave attenuation decreases with the decreasing half-angle. The half-angle is reduced from 20 degrees to 5 degrees, and the attenuation of electromagnetic waves is reduced by about 25 dB. Therefore, reducing the half-angle of blunt cone vehicle can effectively reduce the attenuation of electromagnetic waves. Finally, the feasibility of lowering the half-angle to solve the blackout problem during the whole reentry process was discussed; the results show the operating frequency of terahertz wave that maintains normal communication when the half-angle is 1 degrees is reduced by 0.1 THz compared with the half-angle of 9 degrees. Based on the study, a new scheme combining the reduction of half-angle of blunt cone vehicle and terahertz communication was proposed in this article to mitigate the RF blackout.
机译:太赫兹通信被认为是缓解通信停电的潜在解决方案。然而,目前尚不清楚车辆的形状参数如何影响等离子体护套中的太赫兹通信的传播。在本文中,使用数值超声流体动力学模型和多层传输模型研究了半角对钝锥形车辆周围的等离子体流量和太赫兹传播特性的影响。在天线附近的等离子体护套中的最大电子数密度随着半角的减小而降低。等离子体护套中的高密度部分的厚度几乎不受半角的影响。结果,Terahertz波衰减随着半角的减小而降低。半角从20度降低到5度,电磁波的衰减减小约25dB。因此,减小钝锥车辆的半角可以有效地降低电磁波的衰减。最后,讨论了降低半角以解决整个再入过程中的停电问题的可行性;结果表明,与半角为9度的半角度,在半角为1度时保持正常通信的太赫兹波的工作频率。基于该研究,在本文中提出了一种结合减少钝锥形车辆和太赫兹通信的半角度的新方案,以减轻RF停电。

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