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Description
  • In this contribution we present two recent advanced applications of our Fourier-based modal methods, specifically an aperiodic rigorous coupled wave analysis and a special bi-directional Fourier mode expansion propagation based technique, developed and applied in two cooperating research laboratories, to photonic /plasmonic waveguiding problems with novel physics and a number of interesting characteristics, namely (1) fully 3D subwavelength grating waveguides based on subwavelength segments of high-index material (silicon) surrounded with a lower-index superstrate material (such as SiO2, SU-8, or air), and (2) 2D planar magnetooptic nonreciprocal one-way waveguides, based on a semiconductor InSb/dielectric/metal interfaces.
  • In this contribution we present two recent advanced applications of our Fourier-based modal methods, specifically an aperiodic rigorous coupled wave analysis and a special bi-directional Fourier mode expansion propagation based technique, developed and applied in two cooperating research laboratories, to photonic /plasmonic waveguiding problems with novel physics and a number of interesting characteristics, namely (1) fully 3D subwavelength grating waveguides based on subwavelength segments of high-index material (silicon) surrounded with a lower-index superstrate material (such as SiO2, SU-8, or air), and (2) 2D planar magnetooptic nonreciprocal one-way waveguides, based on a semiconductor InSb/dielectric/metal interfaces. (en)
Title
  • Advanced photonic and plasmonic waveguide nanostructures analyzed with Fourier modal methods
  • Advanced photonic and plasmonic waveguide nanostructures analyzed with Fourier modal methods (en)
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  • Advanced photonic and plasmonic waveguide nanostructures analyzed with Fourier modal methods
  • Advanced photonic and plasmonic waveguide nanostructures analyzed with Fourier modal methods (en)
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  • RIV/68407700:21340/13:00214822!RIV14-GA0-21340___
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  • P(GAP205/10/0046)
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  • 59628
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  • RIV/68407700:21340/13:00214822
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  • numerical modeling; Fourier modal methods; photonic nanostructure; silicon nanowire; subwavelength structured waveguide; magnetooptic effect; nonreciprocity; InSb; one-way waveguide (en)
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  • [23E227A391DA]
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  • Cartagena
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  • Proceedings of the 15th International Conference on Transparent Optical Networks (ICTON), 2013
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  • Kwiecien, Pavel
  • Richter, Ivan
  • Čtyroký, Jiří
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issn
  • 2161-2056
number of pages
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  • 10.1109/ICTON.2013.6602695
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  • IEEE Conference Publications
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  • 21340
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