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首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >Theoretical analysis on power stability and switch time of the non-mechanical beam steering using liquid crystal optical phased array
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Theoretical analysis on power stability and switch time of the non-mechanical beam steering using liquid crystal optical phased array

机译:使用液晶光相控阵列的非机械束转向的功率稳定性和开关时间的理论分析

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摘要

Focusing on the coherent optics of phased array, a dynamic theoretical model is built to analyse the process of laser beam steering using the device of liquid crystal optical phased array. Based on the dynamics of electrical field induced liquid crystal molecule rotation and the mechanism of phased control non-mechanical steering, switching time is redefined according to two curves representing receiving power on the current direction and targeting direction. Meanwhile, including the far field distribution, power stability and pointing direction, two cases with large steering step and tiny steering step are evaluated. The steering time between two angles is minished to be less than the switch-off decay time. In addition, the instability on the process of beam steering is obvious although the steering step is only half of beam width. To overcome this instability, tinier steering step is suggested although it is also limited by the driving algorithm and driving circuits.
机译:专注于相位阵列的相干光学,建立了一种动态理论模型,以利用液晶光相控阵的装置分析激光束转向的过程。 基于电场诱导液晶分子旋转的动态和相控控制非机械转向的机构,根据表示电流方向上的接收电力和靶向方向的两个曲线重新定义切换时间。 同时,包括远场分布,功率稳定性和指向方向,评估两个具有大转向步骤和微小转向步骤的案例。 拆卸两个角度之间的转向时间以小于开关衰减时间。 此外,光束转向过程的不稳定性是显而易见的,尽管转向步长仅是光束宽度的一半。 为了克服这种不稳定性,虽然它也受到驱动算法和驱动电路的限制,但提出了细小的转向步骤。

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