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Cylindrical Liquid Crystal Microlens Array With Rotary Optical Power and Tunable Focal Length

机译:具有旋转光焦度和可调焦距的圆柱形液晶微透镜阵列

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摘要

A novel cylindrical liquid crystal microlens array with rotary power and tunable capability is proposed and experimentally demonstrated. This structure is capable of generating tunable cylindrical microlenses in two different axis by low voltage control. For this, complex electrical signals are required (electrical phase shift of 180°). A control over the maximum phase shift from to radians has been demonstrated. This effect modifies the effective focal length (from 0.2 to 1.2 mm). Moreover, an OFF-state is also possible (behaving like a transparent medium). The structure is simple and does not require a complex fabrication process. The proposed device has several advantages over the existing microlens arrays and is simple and low cost. The device could contribute to developing new applications and to reducing the fabrication costs of current devices. For example, this device can be used in the next generation of mobile displays with autostereoscopic capability.
机译:提出并实验证明了一种新型的具有旋转能力和可调能力的圆柱形液晶微透镜阵列。这种结构能够通过低压控制在两个不同的轴上产生可调的柱面微透镜。为此,需要复杂的电信号(180°的电相移)。已经证明了对从到弧度的最大相移的控制。该效果会修改有效焦距(从0.2到1.2 mm)。此外,OFF状态也是可能的(表现为透明介质)。结构简单,不需要复杂的制造过程。所提出的装置相对于现有的微透镜阵列具有多个优点,并且简单且低成本。该设备可能有助于开发新应用并降低当前设备的制造成本。例如,该设备可用于具有自动立体功能的下一代移动显示器。

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