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观察光子学中的沙漏节点线。

Observation of Hourglass Nodal Lines in Photonics.

机构信息

School of Physics and Astronomy, University of Birmingham, Birmingham, B15 2TT, United Kingdom.

Center for Terahertz Waves and College of Precision Instrument and Optoelectronics Engineering, Tianjin University and the Key Laboratory of Optoelectronics Information and Technology (Ministry of Education), Tianjin 300072, China.

出版信息

Phys Rev Lett. 2019 Mar 15;122(10):103903. doi: 10.1103/PhysRevLett.122.103903.

Abstract

Nodal line semimetals exhibiting line degeneracies in three-dimensional momentum space have been demonstrated recently. In general, the presence of nodal line semimetals is protected by special symmetries, such as mirror symmetry. However, these symmetries are usually necessary but not sufficient conditions, as nodal lines can be annihilated even without breaking them. Very recently, nodal line semimetal possessing an hourglass-shaped band structure emerges as a more robust candidate, where line degeneracies cannot be annihilated while preserving all underlying spatial symmetries. Here, for the first time, we experimentally demonstrate the presence of an hourglass nodal line (HNL) in photonic metacrystal at microwave frequency. We observe the HNL through near-field scanning of the spatial fields, followed by subsequent Fourier transformations. The observed photonic HNL resides in a clean and large frequency interval and is immune to symmetry preserving perturbation, which provides an ideal robust platform for photonic applications, such as anomalous quantum oscillation, spontaneous emission and resonant scattering.

摘要

最近已经证明了在三维动量空间中表现出线简并的节线半金属。一般来说,节线半金属的存在受到特殊对称性的保护,例如镜像对称性。然而,这些对称性通常是必要但非充分的条件,因为即使不破环对称性,节线也可能被湮灭。最近,具有沙漏形能带结构的节线半金属作为一种更稳健的候选者出现,其中线简并在保留所有基础空间对称性的情况下不会被湮灭。在这里,我们首次在微波频率下实验证实了光子超晶格中存在沙漏节线(HNL)。我们通过对空间场的近场扫描观察到 HNL,然后进行随后的傅里叶变换。观察到的光子 HNL 存在于一个干净且大的频率间隔内,并且不受对称保护的微扰的影响,这为光子应用提供了一个理想的稳健平台,例如反常量子振荡、自发发射和共振散射。

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