论文标题
通用元信息,以完全线性控制相干光传输
Universal metasurfaces for complete linear control of coherent light transmission
论文作者
论文摘要
元时间和光学纳米结构的最新进展使光学薄设备的入射光的复杂控制能力。但是,到目前为止,尚不清楚是否有可能实现对两个输入极化状态的极化,振幅和相位的独立控制,即具有一个单个薄纳米结构阵列的独立控制。在这里,我们证明这是可能的,并提出了一个通用元表,这是一个高索引椭圆圆柱的双层阵列,具有完全可设计的手性和各向异性的完整光学自由度。我们从数学上显示了通过相应的琼斯矩阵的可实现的光控制的完整性,实验表明了以前是不可能的三维全息方案的新型,并提出了一种实现任何输入状态敏感矢量载体线性光学性能装置的系统方法。我们的结果在光传输控制中解锁了以前无法访问的自由度。
Recent advances in metasurfaces and optical nanostructures have enabled complex control of incident light with optically thin devices. However, it has thus far been unclear whether it is possible to achieve complete linear control of coherent light transmission, i.e., independent control of polarization, amplitude, and phase for both input polarization states, with just a single, thin nanostructure array. Here we prove that it is possible and propose a universal metasurface, a bilayer array of high-index elliptic cylinders, that possesses a complete degree of optical freedom with fully designable chirality and anisotropy. We mathematically show the completeness of achievable light control with corresponding Jones matrices, experimentally demonstrate new types of three-dimensional holographic schemes that were formerly impossible, and present a systematic way of realizing any input-state-sensitive vector linear optical device. Our results unlock previously inaccessible degrees of freedom in light transmission control.