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Maximal Free-Space Concentration of Electromagnetic Waves

机译:电磁波的最大自由空间浓度

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We derive upper bounds to free-space concentration of electromagnetic waves, mapping out the limits to maximum intensity for any spot size and optical beam-shaping device. For sub-diffraction-limited optical beams, our bounds suggest the possibility for orders-of-magnitude intensity enhancements compared to existing demonstrations, and we use inverse design to discover metasurfaces operating near these new limits. We also demonstrate that our bounds may surprisingly describe maximum concentration defined by a wide variety of metrics. Our bounds require no assumptions about symmetry, scalar waves, or weak scattering, instead relying primarily on the transformation of a quadratic program via orthogonal-projection methods. The bounds and inverse-designed structures presented here can be useful for applications from imaging to 3D printing.
机译:我们将上限推出到自由空间浓度的电磁波,映射到任何点尺寸和光束整形装置的最大强度的限制。对于子衍射限制的光束,我们的界限表明与现有演示相比,我们使用逆设计来发现在这些新限制附近的Metasurfaces进行逆设计的可能性。我们还表明,我们的界限可能令人惊讶地描述由各种度量定义的最大浓度。我们的界限不需要对称性,标量波或弱散射的假设,而是主要通过正交投影方法依赖于二次程序的转换。这里呈现的界限和逆设计的结构对于从成像到3D打印的应用可能有用。

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