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用于操控光的轨道角动量的非线性光学存储器。

Nonlinear optical memory for manipulation of orbital angular momentum of light.

作者信息

de Oliveira R A, Borba G C, Martins W S, Barreiro S, Felinto D, Tabosa J W R

出版信息

Opt Lett. 2015 Nov 1;40(21):4939-42. doi: 10.1364/OL.40.004939.

Abstract

We report on the demonstration of a nonlinear optical memory (NOM) for storage and on-demand manipulation of orbital angular momentum (OAM) of light via higher-order nonlinear processes in cold cesium atoms. A spatially resolved phase-matching technique is used to select each order of the nonlinear susceptibility associated, respectively, with time-delayed four-, six-, and eight-wave mixing processes. For a specific configuration of the stored OAM of the incident beams, we demonstrated that the OAM of the retrieved beam can be manipulated according to the order of the nonlinear process chosen by the operator for reading out the NOM. This demonstration indicates new pathways for applications in classical and quantum information processing where OAM of light is used to encode optical information.

摘要

我们报道了一种非线性光学存储器(NOM)的演示,该存储器用于通过冷铯原子中的高阶非线性过程存储和按需操纵光的轨道角动量(OAM)。采用空间分辨相位匹配技术来选择分别与延时四波、六波和八波混频过程相关的各阶非线性极化率。对于入射光束所存储OAM的特定配置,我们证明了可以根据操作员为读取NOM而选择的非线性过程的阶数来操纵检索光束的OAM。这一演示为经典和量子信息处理中的应用指明了新途径,在这些应用中光的OAM用于编码光学信息。

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