Komanduri Ravi K, Lawler Kristopher F, Escuti Michael J
Department of Electrical and Computer Engineering, North Carolina State University, Raleigh, NC 27695, USA.
Opt Express. 2013 Jan 14;21(1):404-20. doi: 10.1364/OE.21.000404.
We report on a family of complex birefringent elements, called Multi-Twist Retarders (MTRs), which offer remarkably effective control of broadband polarization transformation. MTRs consist of two or more twisted liquid crystal (LC) layers on a single substrate and with a single alignment layer. Importantly, subsequent LC layers are aligned directly by prior layers, allowing simple fabrication, achieving automatic layer registration, and resulting in a monolithic film with a continuously varying optic axis. In this work, we employ a numerical design method and focus on achromatic quarter- and half-wave MTRs. In just two or three layers, these have bandwidths and general behavior that matches or exceeds all traditional approaches using multiple homogenous retarders. We validate the concept by fabricating several quarter-wave retarders using a commercial polymerizeable LC, and show excellent achromaticity across bandwidths of 450-650 nm and 400-800 nm. Due to their simple fabrication and many degrees of freedom, MTRs are especially well suited for patterned achromatic retarders, and can easily achieve large bandwidth and/or low-variation of retardation within visible through infrared wavelengths.
我们报道了一种复杂双折射元件家族,称为多扭曲延迟器(MTRs),它能对宽带偏振变换进行极为有效的控制。MTRs由单个基板上的两个或更多扭曲液晶(LC)层以及单个取向层组成。重要的是,后续的LC层直接由先前的层取向,这使得制造简单,实现了层的自动对准,并形成了具有连续变化光轴的单片薄膜。在这项工作中,我们采用了一种数值设计方法,并专注于消色差四分之一波和半波MTRs。只需两三层,这些MTRs的带宽和一般性能就与或超过了使用多个均匀延迟器的所有传统方法。我们通过使用商用可聚合LC制造几个四分之一波延迟器来验证这一概念,并展示了在450 - 650纳米和400 - 800纳米带宽范围内出色的消色差特性。由于其制造简单且有许多自由度,MTRs特别适合用于图案化消色差延迟器,并且能够轻松地在可见光到红外波长范围内实现大带宽和/或低延迟变化。