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Wide angle and narrow-band asymmetric absorption in visible and near-infrared regime through lossy Bragg stacks

机译:通过有损布拉格堆叠在可见光和近红外条件下的广角和窄带不对称吸收

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摘要

Absorber is an important component in various optical devices. Here we report a novel type of asymmetric absorber in the visible and near-infrared spectrum which is based on lossy Bragg stacks. The lossy Bragg stacks can achieve near-perfect absorption at one side and high reflection at the other within the narrow bands (several nm) of resonance wavelengths, whereas display almost identical absorption/reflection responses for the rest of the spectrum. Meanwhile, this interesting wavelength-selective asymmetric absorption behavior persists for wide angles, does not depend on polarization, and can be ascribed to the lossy characteristics of the Bragg stacks. Moreover, interesting Fano resonance with easily tailorable peak profiles can be realized using the lossy Bragg stacks.
机译:吸收器是各种光学设备中的重要组件。在这里,我们报告了一种基于有损布拉格堆叠的新型可见光和近红外不对称吸收体。有损的布拉格堆叠可以在谐振波长的窄带(几纳米)内,在一侧实现近乎完美的吸收,而在另一侧实现高反射,而在其余光谱中则显示几乎相同的吸收/反射响应。同时,这种有趣的波长选择性不对称吸收行为在广角上仍然存在,不依赖于偏振,并且可以归因于布拉格堆叠的损耗特性。此外,使用有损的布拉格堆栈可以实现有趣的Fano共振,并具有易于定制的峰形。

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