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compact plasmonic structure induced mode excitation and fano resonance
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نویسنده
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chen zhao ,yu yaolun ,wang yangyang ,guo nan ,xiao lin
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منبع
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plasmonics - 2020 - دوره : 15 - شماره : 6 - صفحه:2177 -2183
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چکیده
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Metal-insulator-metal (mim) waveguide has deep sub-wavelength field confinements, which makes it an important component in many aspects. in mim structure, both of the symmetric and anti-symmetric modes could be supported. however, the anti-symmetric mode was hardly used in the spp-based devices due to the critical excitation condition. here, we demonstrate anti-symmetric mode excitation and fano resonance in a compact mim-based plasmonic structure. by changing the position of the output channel, the symmetric mode is suppressed and only anti-symmetric mode is excited. then, we tune the position of the output channel; anti-symmetric and symmetric mode are both achieved. furthermore, fano resonance is realized due to the coupling between anti-symmetric mode and symmetric mode. in addition, we analyze the effects of the parameters of the structure on the transmission spectra, and a plasmonic refractive index sensor with sensitivity about 800 nm/riu and 1100 nm/riu based on different waveguide modes is also realized. the proposed structure provides a novel method to achieve anti-symmetric mode excitation, and it has important applications in nanophotonic devices such as filter, sensor, and photoswitch, and has important significance in achieving all-optical on-chip integration.
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کلیدواژه
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mim waveguide ,anti-symmetric and symmetric mode ,sensor ,fano resonance
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آدرس
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china academy of space technology, nanophotonics and optoelectronics research center, qian xuesen laboratory of space technology, china, china academy of space technology, nanophotonics and optoelectronics research center, qian xuesen laboratory of space technology, china, china academy of space technology, nanophotonics and optoelectronics research center, qian xuesen laboratory of space technology, china, china academy of space technology, nanophotonics and optoelectronics research center, qian xuesen laboratory of space technology, china, china academy of space technology, nanophotonics and optoelectronics research center, qian xuesen laboratory of space technology, china
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Authors
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