A one-way terahertz plasmonic waveguide based on surface magneto plasmons in a metal-dielectric-semiconductor structure
A novel one-way-propagating terahertz plasmonic waveguide at a subwavelength scale is proposed based on a metal-dielectric-semiconductor structure. Unlike one-way plasmonic devices based on interference effects of surface plasmons, the proposed one-way device is based on nonreciprocal surface magnet...
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sg-ntu-dr.10356-1068242019-12-06T22:19:11Z A one-way terahertz plasmonic waveguide based on surface magneto plasmons in a metal-dielectric-semiconductor structure Hu, Bin Wang, Qi Jie Zhang, Ying School of Electrical and Electronic Engineering IEEE International Nanoelectronics Conference (5th : 2013 : Singapore) A novel one-way-propagating terahertz plasmonic waveguide at a subwavelength scale is proposed based on a metal-dielectric-semiconductor structure. Unlike one-way plasmonic devices based on interference effects of surface plasmons, the proposed one-way device is based on nonreciprocal surface magneto plasmons under an external magnetic field. Theoretical and simulation results demonstrate that the waveguide has a broadly tunable one-way-propagating frequency band by the external magnetic fields. The proposed one-way device can be used to realize various high performance tunable plasmonic devices such as isolators, switches and splitters for ultracompact integrated plasmonic circuits. 2013-11-29T06:18:27Z 2019-12-06T22:19:11Z 2013-11-29T06:18:27Z 2019-12-06T22:19:11Z 2013 2013 Conference Paper Hu, B., Wang, Q. J., & Zhang, Y. (2013). A one-way terahertz plasmonic waveguide based on surface magneto plasmons in a metal-dielectric-semiconductor structure. 2013 In Proceedings of the 5th IEEE International Nanoelectronics Conference 2013,357-359. https://hdl.handle.net/10356/106824 http://hdl.handle.net/10220/17928 http://dx.doi.org/10.1109/INEC.2013.6466046 en |
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A novel one-way-propagating terahertz plasmonic waveguide at a subwavelength scale is proposed based on a metal-dielectric-semiconductor structure. Unlike one-way plasmonic devices based on interference effects of surface plasmons, the proposed one-way device is based on nonreciprocal surface magneto plasmons under an external magnetic field. Theoretical and simulation results demonstrate that the waveguide has a broadly tunable one-way-propagating frequency band by the external magnetic fields. The proposed one-way device can be used to realize various high performance tunable plasmonic devices such as isolators, switches and splitters for ultracompact integrated plasmonic circuits. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Hu, Bin Wang, Qi Jie Zhang, Ying |
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Conference or Workshop Item |
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Hu, Bin Wang, Qi Jie Zhang, Ying |
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Hu, Bin Wang, Qi Jie Zhang, Ying A one-way terahertz plasmonic waveguide based on surface magneto plasmons in a metal-dielectric-semiconductor structure |
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Hu, Bin |
title |
A one-way terahertz plasmonic waveguide based on surface magneto plasmons in a metal-dielectric-semiconductor structure |
title_short |
A one-way terahertz plasmonic waveguide based on surface magneto plasmons in a metal-dielectric-semiconductor structure |
title_full |
A one-way terahertz plasmonic waveguide based on surface magneto plasmons in a metal-dielectric-semiconductor structure |
title_fullStr |
A one-way terahertz plasmonic waveguide based on surface magneto plasmons in a metal-dielectric-semiconductor structure |
title_full_unstemmed |
A one-way terahertz plasmonic waveguide based on surface magneto plasmons in a metal-dielectric-semiconductor structure |
title_sort |
one-way terahertz plasmonic waveguide based on surface magneto plasmons in a metal-dielectric-semiconductor structure |
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2013 |
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https://hdl.handle.net/10356/106824 http://hdl.handle.net/10220/17928 http://dx.doi.org/10.1109/INEC.2013.6466046 |
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