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Off-axis two-mirror laser communication antenna designed using differential equations

机译:使用微分方程设计的离轴两镜激光通信天线

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摘要

In satellite laser communication technology, which is built between planets and between a planet and the Earth, the optical antenna is the key point. Thus, research on optical system design is important. The off-axis reflective system has no obscuration and hence possesses a high efficiency for energy transfer. This study proposes a novel method for designing a free-form off-axis reflective imaging system. This study also introduces differential equations that depend on Fermat's principle and sine condition. Finally, a free-form off-axis two-mirror optical system was designed by using the differential equation method. This system includes one intermediate image plane, in which the field of view (FOV) is - 5° to -4° in the y-axis and -1° to 0° in the x-axis. The modulation transfer function was greater than 0.7 at 50 lp/mm, and the efficiency of energy transmission was high. The free-form off-axis two-mirror optical system involves a wide range of application prospects in the optical antenna used in the satellite laser communication systems. Moreover, the design method that used differential equations was proven simple and effective.
机译:在行星之间以及行星和地球之间建立的卫星激光通信技术中,光学天线是关键。因此,对光学系统设计的研究很重要。离轴反射系统没有遮挡,因此具有高效率的能量传递。这项研究提出了一种新的方法来设计自由形式的离轴反射成像系统。本研究还介绍了取决于费马原理和正弦条件的微分方程。最后,利用微分方程法设计了一种自由轴外二面镜光学系统。该系统包括一个中间图像平面,其中视场(FOV)在y轴上为-5°到-4°,在x轴上为-1°到0°。调制传递函数在50 lp / mm时大于0.7,能量传输效率很高。自由形式的离轴双镜光学系统在卫星激光通信系统中使用的光学天线中具有广泛的应用前景。此外,使用微分方程的设计方法被证明是简单有效的。

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