用于反射零阶抑制的双槽电磁场研究

IF 3.3 4区 物理与天体物理 Q2 CHEMISTRY, PHYSICAL Plasmonics Pub Date : 2023-05-22 DOI:10.1007/s11468-023-01882-1
Liqun Liu, Bo Wang, Hong Zou
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引用次数: 0

摘要

在零阶抑制条件下,本文研究了一种用于双端口反射分束器的双槽反射光栅。在法向入射下,光栅对TE和TM偏振都获得了很高的效率。采用严格的耦合波分析方法导出了双槽光栅的参数。文中还提出了有限元法和模拟退火算法,以确保获得理想的参数。在1550nm的入射波长下,TE偏振和TM偏振的总效率分别达到98.95%和99.30%。同时,TE极化和TM极化的效率 ± 一阶光栅分别为48.15%和46.26%,而在零阶光栅中,它们分别被有效地抑制在2.41%和6.56%。
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Electromagnetic Field Investigation of Double Groove for Reflective Zeroth-order Suppression

With zeroth-order suppression, a double-groove reflective grating for dual-port reflection beam splitter is studied in this paper. Under normal incidence, the grating obtains great efficiencies for both TE and TM polarizations. The parameters of the double-groove grating are derived using rigorous coupled-wave analysis. The finite element method and the simulated annealing algorithm are also presented to make sure that the ideal parameters are obtained. Total efficiencies of 98.95% for TE polarization and 99.30% for TM polarization are realized at an incidence wavelength of 1550 nm. In the meantime, the efficiencies of TE polarization and TM polarization at ± 1st orders are 48.15% and 46.26%, while at zeroth order, they are being effectively suppressed at 2.41% and 6.56%. The suggested grating has exceptional qualities and performs admirably.

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来源期刊
Plasmonics
Plasmonics 工程技术-材料科学:综合
CiteScore
5.90
自引率
6.70%
发文量
164
审稿时长
2.1 months
期刊介绍: Plasmonics is an international forum for the publication of peer-reviewed leading-edge original articles that both advance and report our knowledge base and practice of the interactions of free-metal electrons, Plasmons. Topics covered include notable advances in the theory, Physics, and applications of surface plasmons in metals, to the rapidly emerging areas of nanotechnology, biophotonics, sensing, biochemistry and medicine. Topics, including the theory, synthesis and optical properties of noble metal nanostructures, patterned surfaces or materials, continuous or grated surfaces, devices, or wires for their multifarious applications are particularly welcome. Typical applications might include but are not limited to, surface enhanced spectroscopic properties, such as Raman scattering or fluorescence, as well developments in techniques such as surface plasmon resonance and near-field scanning optical microscopy.
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