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Continuous angle-tunable birefringence with freeform metasurfaces for arbitrary polarization conversion

机译:连续角度可调谐双折射,用于任意极化转换的自由形式元件

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Birefringence occurs when light with different polarizations sees different refractive indices during propagation. It plays an important role in optics and has enabled essential polarization elements such as wave plates. In bulk crystals, it is typically constrained to linear birefringence. In metamaterials with freeform meta-atoms, however, one can engineer the optical anisotropy such that light sees different indices for arbitrary—linear, circular, or elliptical—orthogonal eigen-polarization states. Using topology-optimized metasurfaces, we demonstrate this arbitrary birefringence. It has the unique feature that it can be continuously tuned from linear to elliptical birefringence, by changing the angle of incidence. In this way, a single metasurface can operate as many wave plates in parallel, implementing different polarization transformations. Angle-tunable arbitrary birefringence expands the scope of polarization optics, enables compact and versatile polarization operations that would otherwise require cascading multiple elements, and may find applications in polarization imaging, quantum optics, and other areas.
机译:当具有不同偏振的光在传播期间看到不同的折射率时,发生双折射。它在光学中发挥着重要作用,并且具有使诸如波板的基本偏振元件。在散装晶体中,通常被限制为线性双折射。然而,在具有自由形态元原子的超材料中,人们可以工程师能够为光学各向异性工程师来说,使光看到不同的线性,圆形或椭圆形状的尖端偏振态的不同索引。使用拓扑优化的Metasurfaces,我们展示了这种任意双折射。它具有独特的特征,可以通过改变入射角来连续调谐到椭圆形双折射。以这种方式,单个元表面可以并行地操作,实现不同的偏振变换。角度可调任意双折射扩展了极化光学器件的范围,可以实现紧凑且多功能的极化操作,否则可能需要级联多元素,并且可以在偏振成像,量子光学和其他区域中找到应用。

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