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Topological LC-circuits based on microstrips and observation of electromagnetic modes with orbital angular momentum

机译:基于微带的拓扑LC电路和具有轨道角动量的电磁模的观测

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摘要

New structures with richer electromagnetic properties are in high demand for developing novel microwave and optic devices aimed at realizing fast light-based information transfer and information processing. Here we show theoretically that a topological photonic state exists in a hexagonal LC circuit with short-range textures in the inductance, which is induced by a band inversion between p- and d-like electromagnetic modes carrying orbital angular momentum, and realize this state experimentally in planar microstrip arrays. Measuring both amplitude and phase of the out-of-plane electric field accurately using microwave near-field techniques, we demonstrate directly that topological interfacial electromagnetic waves launched by a linearly polarized dipole source propagate in opposite directions according to the sign of the orbital angular momentum. The open planar structure adopted in the present approach leaves much room for including other elements useful for advanced information processing, such as electric/mechanical resonators, superconducting Josephson junctions and SQUIDs.
机译:为了开发新型的微波和光学设备,以实现快速的基于光的信息传递和信息处理,迫切需要具有更丰富的电磁特性的新结构。在这里,我们从理论上证明,在电感中具有短程纹理的六边形LC电路中存在拓扑光子状态,该状态由携带轨道角动量的p型和d型电磁模式之间的能带反转引起,并通过实验实现了该状态。在平面微带阵列中。使用微波近场技术精确测量平面外电场的幅度和相位,我们直接证明了线性极化偶极子源发射的拓扑界面电磁波根据轨道角动量的符号沿相反方向传播。在本方法中采用的开放平面结构为包括更多可用于高级信息处理的元素(例如电/机械谐振器,超导约瑟夫森结和SQUID)留出了很大的空间。

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