Impact of laser polarization and angle of incidence on phase shifting efficacy of an all-optically addressed liquid crystal delay line at X band

Jinfeng Li
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Abstract

This article conducts an experimental investigation into the impact of laser polarization and angle of incidence on the efficiency of a liquid crystal enabled 0-180° phase shifting delay line operating at the X band. According to measurement results, the polarization of the laser beam with regard to the rubbing direction and the liquid crystal filling direction has a significant impact on the tuning efficacy of the delay line. The possible phase shift is increased when the laser beam is polarized parallel to both the liquid crystal filling direction and the rubbing direction. Furthermore, the effectiveness of the delay line's phase shifting is non-linearly influenced by the angle of incidence, as evidenced by another two experiments that were carried out with the laser source rotated at the same and diverse planes relative to the fixed rubbing alignment direction, respectively.
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激光偏振和入射角对 X 波段全光地址液晶延迟线移相功效的影响
本文通过实验研究了激光偏振和入射角对工作在 X 波段的液晶 0-180° 移相延迟线效率的影响。测量结果表明,激光束在摩擦方向和液晶填充方向上的偏振对延迟线的调谐效率有显著影响。当激光束的偏振方向与液晶填充方向和摩擦方向平行时,可能发生的相移就会增加。此外,延迟线的相移效果还受到入射角度的非线性影响,这一点在另外两个实验中得到了证明,这两个实验分别是在激光源相对于固定的摩擦排列方向旋转相同平面和不同平面时进行的。
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