论文标题

用全电力传输的近场光子路由实现实验性实现

Experimental Realization of Near-Field Photonic Routing with All-Electric Metasources

论文作者

Long, Yang, Ren, Jie, Guo, Zhiwei, Jiang, Haitao, Wang, Yuqian, Sun, Yong, Chen, Hong

论文摘要

在广泛的实际情况下,从稳健的信息通信到有效的量子相互作用等广泛的实践场景中,已被证明在空间上限制的evanevanscent微波光子学是非常可取的。但是,由于缺乏基本的理解和可行的定向耦合方法,这些光子学模式的可行应用受到限制。在这里,我们通过实验证明了由两种单阴性超材料组成的波导中实现的有效近场光子路由。在不模仿极化特征的情况下,我们提出了亚波长度量表的全电力近场交易,并举例说明了其近场函数,例如Janus,Huygens和Spin Sources,对应于时间倒数,平价时间和奇偶校验的内在自由度。我们的工作进一步发展了对定向耦合的光学近场对称和可行的工程方法的理解,这将为有希望的集成mircrowave光子学设备铺平道路。

The spatially confined evanescent microwave photonics have been proved to be highly desirable in broad practical scenarios ranging from robust information communications to efficient quantum interactions. However, the feasible applications of these photonics modes are limited due to the lack of fundamental understandings and feasible directional coupling approaches at sub-wavelengths. Here, we experimentally demonstrate the efficient near-field photonic routing achieved in waveguides composed of two kinds of single-negative metamaterials. Without mimicking the polarization features, we propose all-electric near-field metasource in subwavelength scale and exemplify its near-field functions like Janus, Huygens and spin sources, corresponding to time-reversal, parity-time and parity symmetries of its inner degree of freedom. Our work furthers the understandings about optical near-field symmetry and feasible engineering approaches of directional couplings, which would pave the way for promising integrated mircrowave photonics devices.

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