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Topologically optimized periodic resonant nanostructures for extraordinary optical transmission [Invited]
L. I. N. Yu; H. A. N. Yeming; C. Song and Y. Deng
2021
发表期刊Optical Materials Express
ISSN21593930
卷号11期号:7页码:2153-2164
摘要This paper presents the inverse design of resonant nanostructures for extraordinary optical transmission of periodic metallic slits, where the topology optimization approach is utilized to implement the inverse design procedure and find the geometrical configurations of the nanostructures. By using the inverse design method, the subwavelength-sized resonant nanostructures, localized at the inlet and outlet sides of the periodic metallic slits, are derived with transmission peaks at the prescribed incident wavelengths. The transmissivity is enhanced by effective excitation and guidance of surface plasmon polariton at the inlet side of the slits, the coherent resonance of surface plasmon polariton inside the slits, and radiation of the photonic energy at the outlet side of the slits. The transmission peaks of the periodic metallic slits, with inversely designed resonant nanostructures, are raised along with the red shift of the incident wavelength. The position of the transmission peak of periodic metallic slits can be controlled and localized at the desired frequency, by specifying the incident wave with the wavelength corresponding to the desired frequency preset in the inverse design procedure. By maximizing the minimum transmissivity of the periodic metallic slits with incident wavelengths in a prescribed wavelength range, the extraordinary optical transmission bandwidth can be enlarged, and the sensitivity of transmissivity to wavelength can be decreased equivalently. 2021 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
DOI10.1364/OME.423252
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收录类别SCI ; EI
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文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/65701
专题中国科学院长春光学精密机械与物理研究所
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L. I. N. Yu,H. A. N. Yeming,C. Song and Y. Deng. Topologically optimized periodic resonant nanostructures for extraordinary optical transmission [Invited][J]. Optical Materials Express,2021,11(7):2153-2164.
APA L. I. N. Yu,H. A. N. Yeming,&C. Song and Y. Deng.(2021).Topologically optimized periodic resonant nanostructures for extraordinary optical transmission [Invited].Optical Materials Express,11(7),2153-2164.
MLA L. I. N. Yu,et al."Topologically optimized periodic resonant nanostructures for extraordinary optical transmission [Invited]".Optical Materials Express 11.7(2021):2153-2164.
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