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Isotropic Topological Second-Order Spatial Differentiator Operating in Transmission Mode

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arxiv 2105.05349 v1 pith:YIEEBS2B submitted 2021-05-11 physics.optics physics.app-ph

classification physics.opticsphysics.app-ph
keywords topologicaldifferentiatordifferentiationmodeworkapplicationschargedemonstrated
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Differentiation has widespread applications, particularly in image processing for edge detection. Significant advances have been made in using nanophotonic structures and metamaterials to perform such operations. In particular, a recent work demonstrated a topological differentiator in which the transfer function exhibits a topological charge, making the differentiation operation robust to variation of operating conditions. The demonstrated topological differentiator, however, operates in the reflection mode at off-normal incidence and is difficult to integrate into compact imaging systems. In this work, we design a topological differentiator that operates isotropically in transmission mode at normal incidence. The device exhibits an optical transfer function with a symmetry-protected, topological charge of $\pm 2$ and performs second-order differentiation. Our work points to the potential of harnessing topological concepts for optical computing applications.

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