Properties of resonant photonic lattices: Bloch mode dynamics, band flips, and applications
Properties of resonant photonic lattices: Bloch mode dynamics, band flips, and applications
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DOI:
10.1117/12.2547322
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发表时间:
2020-02
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影响因子:
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通讯作者:
R. Magnusson;K. Lee;Hafez Hemmati;Pawarat Bootpakdeetam;Jonathan Vasilyev;F. A. Simlan;Nasrin Razmjooei;Y. Ko;Shanwen Zhang;Sun-Goo Lee;H. Svavarsson
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文献类型:
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作者:
R. Magnusson;K. Lee;Hafez Hemmati;Pawarat Bootpakdeetam;Jonathan Vasilyev;F. A. Simlan;Nasrin Razmjooei;Y. Ko;Shanwen Zhang;Sun-Goo Lee;H. Svavarsson
We review guided-mode resonant photonic lattices by addressing their functionalities and potential device applications. The 1D canonical model is rich in properties and conceptually transparent, with all the main conclusions being applicable to 2D metasurfaces and periodic photonic slabs. We explain the operative physical mechanisms grounded in lateral leaky Bloch modes. We summarize the band dynamics of the leaky stopband. With several examples, we demonstrate that Mie scattering is not causative in resonant reflection. Illustrated applications include a wideband reflector at infrared bands as well as resonant reflectors with triangular profiles. We quantify the improved efficiency of a silicon reflector operating in the visible region relative to loss reduction as realizable with sample hydrogenation. A resonant polarizer with record performance is presented.