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Invisibility Cloak Printed on a Photonic Chip

机译:隐形斗篷印在光子芯片上

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Invisibility cloak capable of hiding an object can be achieved by properly manipulating electromagnetic field. Such a remarkable ability has been shown in transformation and ray optics. Alternatively, it may be realistic to create a spatial cloak by means of confining electromagnetic field in three-dimensional arrayed waveguides and introducing appropriate collective curvature surrounding an object. We realize the artificial structure in borosilicate by femtosecond laser direct writing, where we prototype up to 5,000 waveguides to conceal millimeter-scale volume. We characterize the performance of the cloak by normalized cross correlation, tomography analysis and continuous three-dimensional viewing angle scan. Our results show invisibility cloak can be achieved in waveguide optics. Furthermore, directly printed invisibility cloak on a photonic chip may enable controllable study and novel applications in classical and quantum integrated photonics, such as invisualising a coupling or swapping operation with on-chip circuits of their own.
机译:能够通过适当操纵电磁场来实现能够隐藏物体的隐形斗篷。这种显着的能力已在转换和射线光学中显示。或者,通过限制三维阵列波导的电磁场和引入物体周围的适当的集体曲率来创建空间斗篷,它可以是现实的。我们通过飞秒激光直接写入来实现硼硅酸盐中的人工结构,在那里我们的原型高达5,000波导以隐藏毫米尺度的体积。我们通过归一化交叉相关,断层扫描分析和连续的三维视角扫描来表征裂缝的性能。我们的结果表明,在波导光学中可以实现隐形斗篷。此外,在光子芯片上直接印刷的隐形性裂缝可以在经典和量子集成光子上能够可控的研究和新颖的应用,例如与自己的片上电路的耦合或交换操作进行无论如何。

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