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可光聚合玻璃中高空间频率全息光栅的偏振和相移特性

Polarization and phase-shift properties of high spatial frequency holographic gratings in a photopolymerizable glass.

作者信息

Martínez-Matos Oscar, Rodrigo José A, Calvo María L, Cheben Pavel

机构信息

Departamento de Optica, Facultad de Ciencias Físicas, Universidad Complutense de Madrid, 28040, Madrid, Spain.

出版信息

Opt Lett. 2009 Feb 15;34(4):485-7. doi: 10.1364/ol.34.000485.

Abstract

Polarization properties of transmission volume holographic phase gratings recorded in a photopolymerizable glass modified with high refractive index species are reported. The gratings are recorded by the interference of two parallel s-polarized writing beams with orthogonal propagation directions. High optical quality, low scattering, and diffraction efficiency of 99.4% are achieved. Degrees of polarization of 0.987 and 0.999 are obtained for transmitted and diffracted light, respectively. Furthermore, phase analysis of the transmitted light reveals a phase discontinuity of pi at the Bragg angle.

摘要

报道了在添加高折射率物质的可光聚合玻璃中记录的透射体积全息相位光栅的偏振特性。这些光栅通过两个具有正交传播方向的平行s偏振写入光束的干涉来记录。实现了高光学质量、低散射以及99.4%的衍射效率。透射光和衍射光的偏振度分别达到0.987和0.999。此外,对透射光的相位分析表明在布拉格角处存在π的相位不连续性。

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