论文标题

在古典光学元件中建立基本的相偏置链接

Establishment of the fundamental phase-to-polarization link in classical optics

论文作者

Weng, Xiaoyu, Gao, Xiumin, Sui, Guorong, Song, Qiang, Dong, Xiangmei, Qu, Junle, Zhuang, Songlin

论文摘要

由于固有的光束固有极化模式的纠缠,标量相变的矢量极化远远超出了我们对经典光学偏振和相位之间关系之间关系的理解。为了克服这一局限性,我们通过相矢量化的原理建立了这种奇迹的关系,该原理可以将三个特定阶段转化为线性,圆形和椭圆极化。可以使用仅相位空间光调制器来实现基于相位矢量原理的极化空间调节器,该调制器不仅可以以实时的动态方式对光束进行像素级极化操纵,还可以同时保留完整的相位控制。这项工作展示了相对极化的链接,并报告了极化空间光调节器的创建,这将改变我们对光束自然特性的看法,并为矢量光学时代铺平道路。

Vector polarization induced by a change in scalar phase has been far beyond our understanding of the relationship between polarization and phase in classical optics due to the entanglement of inherent polarized modes of light beams. To overcome this limitation, we establish this miraculous relationship by the principle of phase vectorization, which can transform three particular phases into linear, circular and elliptical polarizations. A polarized-spatial light modulator based on the principle of phase vectorization can be achieved using a phase-only spatial light modulator, which not only enables pixel-level polarization manipulation of light beams in a real-time dynamic way but also simultaneously retains complete phase control. This work demonstrates the phase-to-polarization link and reports the creation of polarized-spatial light modulator, which will transform our view of the natural properties of light beam and pave the way for the era of vector optics.

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