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Near-field microscopy of electromagnetically induced transparency in Terahertz dolmens

机译:太赫兹都尔门电磁感应透明性的近场显微镜

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Summary form only given. Terahertz (THz) resonant structures present an attractive canvas for the design of novel optoelectronic devices in the far-infrared. By exploiting the strong scattering properties of metallic resonators, effects such as beam steering [1], spectral filtering [2], and enhanced group delays [3] have been demonstrated over very thin optical path lengths with high figures of merit. In many implementations, such effects arise due to interferences occurring in local fields of the resonators via evanescent coupling. We use scanning probe near-field THz time-domain microscopy [4] to present spectral maps of a periodic array of gold dolmen structures. The system consists of a first resonator that supports a bright mode, which couples efficiently to the radiation field, and a second resonator that supports a dark mode which cannot be driven by incident plane wave radiation. The interaction of these two modes in the near-field gives rise to electromagnetically induced transparency, observed in far-field extinction spectra. The coupling between bright and dark modes supported by the structure is visualized through the hybridization of these modes, and by the enhanced field recorded at position of the dark resonator which cannot be directly excited from the far-field. These measurements present a platform for disentangling the local field distribution near more complex optoelectronic devices in the THz range, for applications in the emerging field of THz photonics.
机译:仅提供摘要表格。太赫兹(THz)谐振结构为设计新颖的远红外光电器件提供了诱人的画布。通过利用金属谐振器的强散射特性,在具有高品质因数的非常薄的光程长度上,已证明了诸如光束转向[1],光谱滤波[2]和增强的群延迟[3]之类的效果。在许多实施方式中,由于经由van逝耦合在谐振器的局部场中发生的干扰而产生这种效果。我们使用扫描探针近场太赫兹时域显微镜[4]来呈现金都门结构的周期性阵列的光谱图。该系统包括一个支持明亮模式的第一谐振器,该模式有效耦合到辐射场,以及一个支持黑暗模式的第二谐振器,该模式不能由入射平面波辐射驱动。在远场消光光谱中观察到,这两种模式在近场中的相互作用产生了电磁感应的透明性。结构所支持的明暗模式之间的耦合通过这些模式的混合以及在暗谐振器位置记录的增强场(无法从远场直接激发)而可视化。这些测量提供了一个平台,用于在太赫兹光子学新兴领域中解开太赫兹范围内更复杂的光电器件附近的局部场分布。

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