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Integrated optical bio-sensor based on pure surface plasmon-polariton excited by a waveguide grating

机译:基于波导光栅激发的纯表面等离子体激元的集成光学生物传感器

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In this paper, we present a theoretical model and the characteristics of a refractive index sensor based on pure surface plasmon-polariton (SPP) excited by a properly designed waveguide Bragg gratings (WBG) or long period gratings (LPG). The gratings are imprinted in a waveguide layer and we propose the potential of a buried waveguide fabricated by a novel method for SPP bio-sensing using a continues-wave (CW) CO2 laser. The pure SPP is propagating in an optimized 5-layer structure which has a metal thickness of 20 nm and separated from the waveguide layer by a dielectric cladding which has thickness of 0.5 µm. As a result, LPG based sensor is more sensitive to changes in the sensed medium refractive index and requires much shorter gratings length for a given sensitivity than the WBG based one. The proposed sensor is highly sensitive and free from any moving parts and can be used as bio/chemical sensor.
机译:在本文中,我们提出了一种理论模型和折射率传感器的特性,该折射率传感器基于通过适当设计的波导布拉格光栅(WBG)或长周期光栅(LPG)激发的纯表面等离子体激元(SPP)。光栅被刻印在波导层中,我们提出了一种利用连续波(CW)CO 2 激光通过新颖的SPP生物传感方法制造的掩埋波导的潜力。纯SPP在优化的5层结构中传播,该结构的金属厚度为20 nm,并通过厚度为0.5 µm的介电包层与波导层隔离。因此,与基于WBG的传感器相比,基于LPG的传感器对感测到的介质折射率的变化更加敏感,并且对于给定的灵敏度,需要的光栅长度要短得多。提出的传感器是高度敏感的,没有任何运动部件,可以用作生物/化学传感器。

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