Mie Scattering for Photonic Devices

被引:23
作者
Dorodnyy, Alexander [1 ]
Smajic, Jasmin [1 ]
Leuthold, Juerg [1 ]
机构
[1] Swiss Fed Inst Technol, Inst Electromagnet Fields IEF, Gloriastr 35, CH-8092 Zurich, Switzerland
关键词
metamaterials; metasurfaces; Mie-scattering; nanostructures; plasmonics; TALBOT LITHOGRAPHY; COLOR FILTERS; GENERATION; NANOSTRUCTURES; METASURFACES; ENHANCEMENT; RESONATORS; MICROWAVE; RESONANCE; COMPACT;
D O I
10.1002/lpor.202300055
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Mie scattering is increasingly exploited to manipulate electromagnetic fields to achieve strong resonant enhancement, to obtain perfect absorption of radiation, and to generate polarization or wavelength selectivity and/or sensitivity. In fact, a multitude of photonic applications are arising that benefit from Mie scattering and have already led to the formation of novel image and hologram schemes or to the design of efficient and compact photodetectors and light sources. Here, the Mie scattering theory for spherical scatterers is reviewed, the basics of the field-decomposition onto the Mie modes are shown, and dielectric and metallic particles are compared. Recent applications for light spectrum control, detection, non-linear effects enhancement, and emission are reviewed. How a periodic arrangement of Mie-scatterers can be utilized to create a strong (in the order of 10 to 100) absorption enhancement in otherwise weakly absorbing layers is also demonstrated. The enhancement dependence on the diameter-to-wavelength ratio of the scatterer is analyzed, and how the influence of different Mie-modes can be distinguished in the periodic array by looking at the field components normal to the scatterer surface is discussed.
引用
收藏
页数:18
相关论文
共 50 条
  • [41] Optical measurement of hypersonic microparticles using Mie scattering
    Cole, JB
    24TH INTERNATIONAL CONGRESS ON HIGH-SPEED PHOTOGRAPHY AND PHOTONICS, 2001, 4183 : 552 - 555
  • [42] Mie scattering of light with orbital angular momentum by nanoparticles
    Acharya, Pramod
    Guzman, Angela M.
    22ND CONGRESS OF THE INTERNATIONAL COMMISSION FOR OPTICS: LIGHT FOR THE DEVELOPMENT OF THE WORLD, 2011, 8011
  • [43] Applications of Fiber Lasers for the Development of Compact Photonic Devices
    Mary, Rose
    Choudhury, Debaditya
    Kar, Ajoy K.
    IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, 2014, 20 (05)
  • [44] Visible Mie Scattering in Nonabsorbing Hollow Sphere Powders
    Retsch, Markus
    Schmelzeisen, Marcus
    Butt, Hans-Juergen
    Thomas, Edwin L.
    NANO LETTERS, 2011, 11 (03) : 1389 - 1394
  • [45] Advancement in Colloidal Metasurfaces: Approaches for Scalable Photonic Devices
    Seckin, Sezer
    Sarkar, Swagato
    Koenig, Tobias A. F.
    ADVANCED MATERIALS INTERFACES, 2025,
  • [46] Deep neural networks for the evaluation and design of photonic devices
    Jiang, Jiaqi
    Chen, Mingkun
    Fan, Jonathan A.
    NATURE REVIEWS MATERIALS, 2021, 6 (08) : 679 - 700
  • [47] Ultra-Broadband Directional Scattering by Colloidally Lithographed High-Index Mie Resonant Oligomers and Their Energy-Harvesting Applications
    Zhang, Yinan
    Xu, Yi
    Chen, Shiren
    Lu, Hua
    Chen, Kai
    Cao, Yaoyu
    Miroshnichenko, Andrey E.
    Gu, Min
    Li, Xiangping
    ACS APPLIED MATERIALS & INTERFACES, 2018, 10 (19) : 16776 - 16782
  • [48] Modeling and rendering of the atmosphere using Mie-scattering
    Jackel, D
    Walter, B
    COMPUTER GRAPHICS FORUM, 1997, 16 (04) : 201 - 210
  • [49] Active photonic platforms for the mid-infrared to the THz regime using spintronic structures
    Armelles, Gaspar
    Cebollada, Alfonso
    NANOPHOTONICS, 2020, 9 (09) : 2709 - 2729
  • [50] Directional Scattering in a Germanium Nanosphere in the Visible Light Region
    Ma, Churong
    Yan, Jiahao
    Huang, Yingcong
    Yang, Guowei
    ADVANCED OPTICAL MATERIALS, 2017, 5 (24):