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人眼对光自旋轨道态中空间相关的 Pancharatnam-Berry 相位的心理物理分辨。

Human psychophysical discrimination of spatially dependant Pancharatnam-Berry phases in optical spin-orbit states.

机构信息

Institute for Quantum Computing, University of Waterloo, Waterloo, ON, N2L3G1, Canada.

School of Optometry and Vision Science, University of Waterloo, Waterloo, ON, N2L3G1, Canada.

出版信息

Sci Rep. 2022 Feb 28;12(1):3245. doi: 10.1038/s41598-022-07089-4.

Abstract

We tested the ability of human observers to discriminate distinct profiles of spatially dependant geometric phases when directly viewing stationary structured light beams. Participants viewed polarization coupled orbital angular momentum (OAM) states, or "spin-orbit" states, in which the OAM was induced through Pancharatnam-Berry phases. The coupling between polarization and OAM in these beams manifests as spatially dependant polarization. Regions of uniform polarization are perceived as specifically oriented Haidinger's brushes, and study participants discriminated between two spin-orbit states based on the rotational symmetry in the spatial orientations of these brushes. Participants used self-generated eye movements to prevent adaptation to the visual stimuli. After initial training, the participants were able to correctly discriminate between two spin-orbit states, differentiated by OAM [Formula: see text], with an average success probability of [Formula: see text] ([Formula: see text], [Formula: see text]). These results support our previous observation that human observers can directly perceive spin-orbit states, and extend this finding to non-rotating beams, OAM modes induced via Pancharatnam-Berry phases, and the discrimination of states that are differentiated by OAM.

摘要

我们测试了人类观察者在直接观察静态结构光束时区分不同空间相关几何相位分布的能力。参与者观察了偏振耦合轨道角动量(OAM)态,或“自旋轨道”态,其中 OAM 通过 Pancharatnam-Berry 相位产生。这些光束中偏振和 OAM 的耦合表现为空间相关的偏振。均匀偏振区域被感知为特定取向的海丁格尔刷,研究参与者根据这些刷子的空间取向的旋转对称性来区分两种自旋轨道状态。参与者使用自发的眼球运动来防止对视觉刺激的适应。经过初步训练,参与者能够正确区分两种自旋轨道状态,其区别在于 OAM [Formula: see text],平均成功率为 [Formula: see text]([Formula: see text],[Formula: see text])。这些结果支持了我们之前的观察结果,即人类观察者可以直接感知自旋轨道状态,并将这一发现扩展到非旋转光束、通过 Pancharatnam-Berry 相位产生的 OAM 模式以及区分由 OAM 区分的状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/468e/8885666/a0d8ee96e709/41598_2022_7089_Fig1_HTML.jpg

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