论文标题

单次波长互补谐振器的非侵入性近场光谱

Non-Invasive Near-field Spectroscopy of Single Sub-Wavelength Complementary Resonators

论文作者

Hale, Lucy L, Keller, Janine, Siday, Thomas, Hermans, Rodolfo I, Haase, Johannes, Reno, John L, Brener, Igal, Scalari, Giacomo, Faist, Jérôme, Mitrofanov, Oleg

论文摘要

亚波长的金属谐振器为通过紧密限制谐振电磁场而实现强烈的光耦合提供了途径。但是,对这种谐振器的研究通常会带来实验困难,尤其是在Terahertz(THZ)频率上。单个亚波长谐振器与THZ梁弱相互作用,因此很难使用远场方法进行探测。而谐振器阵列表现出谐振器之间的耦合,这会影响谐振器频谱签名和场限制。在这里,将传统的远场THZ光谱与孔型THZ近场显微镜进行了系统的比较,以研究互补的THZ谐振器。尽管远场方法证明对单个谐振器进行了不切实际,但近场技术可提供高信噪比的光谱信息,只能在远场中使用谐振器阵列实现。同时,近场技术使我们能够分析单个谐振器 - 不存在阵列中存在的谐振器间耦合 - 而无需与近乎修复的探针相互作用。此外,近场技术允许在时空和时间上映射高度限制的场和表面波。此信息使对阵列中的谐振器光谱响应的宝贵见解。这种近场显微镜和光谱法实现了单谐振机制中THZ频率的强光结合的研究。

Subwavelength metallic resonators provide a route to achieving strong light-matter coupling by means of tight confinement of resonant electromagnetic fields. Investigation of such resonators however often presents experimental difficulties, particularly at terahertz (THz) frequencies. A single subwavelength resonator weakly interacts with THz beams, making it difficult to probe it using far-field methods; whereas arrays of resonators exhibit inter-resonator coupling, which affects the resonator spectral signature and field confinement. Here, traditional far-field THz spectroscopy is systematically compared with aperture-type THz near-field microscopy for investigating complementary THz resonators. Whilst the far-field method proves impractical for measuring single resonators, the near-field technique gives high signal-to-noise spectral information, only achievable in the far-field with resonator arrays. At the same time, the near-field technique allows us to analyze single resonators - free from inter-resonator coupling present in arrays - without significant interaction with the near-filed probe. Furthermore, the near-field technique allows highly confined fields and surface waves to be mapped in space and time. This information gives invaluable insight into resonator spectral response in arrays. This near-field microscopy and spectroscopy method enables investigations of strong light-matter coupling at THz frequencies in the single-resonator regime.

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