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Simultaneous Generation of Arbitrary Assembly of Polarization States with Geometrical-Scaling-Induced Phase Modulation

机译:用几何缩放诱导的相位调制同时产生偏振态的任意组装

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Manipulating the polarization of light on the microscale or nanoscale is essential for integrated photonics and quantum optical devices. Nowadays, the metasurface allows one to build on-chip devices that efficiently manipulate the polarization states. However, it remains challenging to generate different types of polarization states simultaneously, which is required to encode information for quantum computing and quantum cryptography applications. By introducing geometrical-scaling-induced (GSI) phase modulations, we demonstrate that an assembly of circularly polarized (CP) and linearly polarized (LP) states can be simultaneously generated by a single metasurface made of L-shaped resonators with different geometrical features. Upon illumination, each resonator diffracts the CP state with a certain GSI phase. The interaction of these diffractions leads to the desired output beams, where the polarization state and the propagation direction can be accurately tuned by selecting the geometrical shape, size, and spatial sequence of each resonator in the unit cell. As an example of potential applications, we show that an image can be encoded with different polarization profiles at different diffraction orders and decoded with a polarization analyzer. This approach resolves a challenging problem in integrated optics and is inspiring for on-chip quantum information processing.
机译:操纵微尺寸或纳米级光的光极化对于集成的光子和量子光学器件是必不可少的。如今,MEDasurface允许一个人建立有效操纵偏振状态的片上器件。然而,它同时生成不同类型的偏振态,这仍然具有挑战性,这是对量子计算和量子密码应用的信息编码的。通过引入几何缩放诱导的(GSI)相位调制,我们证明圆偏振(CP)和线性偏振(LP)状态的组装可以通过由具有不同几何特征的L形谐振器制成的单个元曲面同时产生。在照明时,每个谐振器与某个GSI相衍射CP状态。这些衍射的相互作用导致所需的输出光束,其中通过选择单元电池中的每个谐振器的几何形状,尺寸和空间序列,可以精确地调整偏振状态和传播方向。作为潜在应用的示例,我们示出了图像可以以不同的衍射令以不同的衍射级序列编码并用偏振分析器解码。这种方法解决了集成光学的具有挑战性问题,并且鼓励了片上量子信息处理。

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