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利用复频率合成波克服超透镜中的损耗。

Overcoming losses in superlenses with synthetic waves of complex frequency.

作者信息

Guan Fuxin, Guo Xiangdong, Zeng Kebo, Zhang Shu, Nie Zhaoyu, Ma Shaojie, Dai Qing, Pendry John, Zhang Xiang, Zhang Shuang

机构信息

New Cornerstone Science Laboratory, Department of Physics, University of Hong Kong, Hong Kong, China.

CAS Key Laboratory of Nanophotonic Materials and Devices, CAS Key Laboratory of Standardization and Measurement for Nanotechnology, CAS Center for Excellence in Nanoscience, National Center for Nanoscience and Technology, Beijing, China.

出版信息

Science. 2023 Aug 18;381(6659):766-771. doi: 10.1126/science.adi1267. Epub 2023 Aug 17.

Abstract

Superlenses made of plasmonic materials and metamaterials can image features at the subdiffraction scale. However, intrinsic losses impose a serious restriction on imaging resolution, a problem that has hindered widespread applications of superlenses. Optical waves of complex frequency that exhibit a temporally attenuating behavior have been proposed to offset the intrinsic losses in superlenses through the introduction of virtual gain, but experimental realization has been lacking because of the difficulty of imaging measurements with temporal decay. In this work, we present a multifrequency approach to constructing synthetic excitation waves of complex frequency based on measurements at real frequencies. This approach allows us to implement virtual gain experimentally and observe deep-subwavelength images. Our work offers a practical solution to overcome the intrinsic losses of plasmonic systems for imaging and sensing applications.

摘要

由等离子体材料和超材料制成的超透镜能够对亚衍射尺度的特征进行成像。然而,固有损耗对成像分辨率造成了严重限制,这一问题阻碍了超透镜的广泛应用。有人提出具有时间衰减行为的复频率光波可通过引入虚拟增益来抵消超透镜中的固有损耗,但由于难以进行具有时间衰减的成像测量,一直缺乏实验验证。在这项工作中,我们提出了一种基于实频测量构建复频率合成激发波的多频方法。这种方法使我们能够通过实验实现虚拟增益并观察深亚波长图像。我们的工作为克服等离子体系统在成像和传感应用中的固有损耗提供了一种切实可行的解决方案。

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