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Rotating light with light: Generation of helical modes of light by spin-to-orbital angular momentum conversion in inhomogeneous liquid crystals

机译:用光旋转光:通过旋转到轨道角动量转化在非均匀液晶中产生螺旋光模式

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I review recent results on a novel method for generating helical waves of visible light based on inhomogeneous birefringent plates made of a suitably patterned liquid crystal. These devices, dubbed "q-plates", act on the light wave by converting its spin angular momentum into orbital angular momentum, an optical process not envisioned before. The output helical wave can be easily and rapidly switched between opposite wavefront helicities by switching the input polarization with standard electro-optics devices. The process can be cascaded, so that rapid switching can take place among multiple values of the wavefront helicity. More generally, patterned liquid-crystal devices similar to those realized for generating helical beams may be used for shaping the optical wavefront in any prescribed way, with the possibility of dynamical polarization multiplexing between conjugate wavefronts. This is an application of the Pancharatnam-Berry phase principle, allowing the realization of a novel kind of optical elements for wavefront shaping. Potential developments in the fields of optical communication and quantum computation are briefly discussed.
机译:我审查了基于由适当图案化的液晶制成的非均匀双折射板产生螺旋波的新方法的最新结果。这些装置被称为“Q-板”,作用于光波通过转换它的自旋角动量为轨道角动量,光学处理之前没有预见的。通过用标准电光器件切换输入极化,可以在相对的波前螺旋之间容易且快速地切换输出螺旋波。该过程可以级联,从而可以在波前螺旋的多个值之间进行快速切换。更一般地,类似于用于产生螺旋束的图案化的液晶装置可以用于以任何规定的方式塑造光波前沿,具有与共轭波前之间的动态偏振复用的可能性。这是Pancharatnam-Berry相位原理的应用,允许实现用于波前塑造的新型光学元件。简要讨论了光通信和量子计算领域的潜在发展。

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