Sub-Micrometer-Sized Spectrometer by Using Plasmonic Tapered Channel-Waveguide

It has been a critical issue to reduce the size of spectrometers in many fields such as on-chip chemical and biological sensing. The proposed plasmonic channel-waveguide with a sub-micrometer width has a cutoff frequency which enables us to control wavelength dependent propagation properties. We foc...

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Veröffentlicht in:Current optics and photonics 2014, 18(6), , pp.788-792
Hauptverfasser: Da Eun Lee, Tae-Woo Lee, Soon-Hong Kwon
Format: Artikel
Sprache:eng
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Zusammenfassung:It has been a critical issue to reduce the size of spectrometers in many fields such as on-chip chemical and biological sensing. The proposed plasmonic channel-waveguide with a sub-micrometer width has a cutoff frequency which enables us to control wavelength dependent propagation properties. We focused on the capability of the waveguide for spectral-to-spatial mapping when the waveguide width changes gradually. In this paper, we propose a plasmonic tapered channel-waveguide structure as a compact spectrometer with a physical size of 0.24×2.0×0.20 μm3. The scattering point just above the tapered waveguide moves linearly depending on the wavelength of the injecting light. The spectral-to-spatial mapping can be improved by increasing the tapered length. KCI Citation Count: 2
ISSN:2508-7266
2508-7274