光学
色散(光学)
太赫兹辐射
波前
材料科学
光学相干层析成像
超材料
波长
群时延色散
光电子学
色差
相(物质)
色阶
物理
光纤
色散位移光纤
量子力学
光纤传感器
作者
Fen Zhao,Ziping Li,Sheng Li,Xuemei Dai,Yi Zhou,Xiaoyu Liao,Juncheng Cao,Gaofeng Liang,Zhengguo Shang,Zhihai Zhang,Zhongquan Wen,Hua Li,Gang Chen
出处
期刊:Photonics Research
[Optica Publishing Group]
日期:2022-02-02
卷期号:10 (4): 886-886
被引量:36
摘要
Chromatic optical lenses have promising applications in three-dimensional imaging, which allows fast spectral tomography without mechanical moving parts. The scanning range of current chromatic optical lenses is limited by their dispersion ability. The recent development in metasurfaces provides ideal blocks for optical wavefront manipulation and dispersion engineering of artificial materials at sub-wavelength scales. Hyper-dispersive metalenses can be realized by utilizing dispersive meta-atoms, which have enhanced dispersion compared to regular diffractive lenses. This is critical for increasing the imaging depth of fast spectral tomography. In this work, a hyper-dispersive metalens is realized with a chromatic dispersion 1.76 times greater than that of a regular diffractive metalens in the THz frequency range of 2.40–2.61 THz by simultaneously controlling the frequency-dependent phase, group delay (GD), and GD dispersion of the metalens. This approach can also be extended to other optical spectra and improve the performance of spectral tomography.
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