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Optical Dispersions of Bloch Surface Waves and Surface Plasmon Polaritons: Towards Advanced Biosensors

机译:Bloch表面波和表面等离激元极化子的光学色散:走向先进的生物传感器。

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摘要

The total internal reflection ellipsometry (TIRE) method was used for the excitation and study of the sensitivity features of surface plasmon polariton (SPP) and Bloch surface waves (BSWs) resonances. For the BSWs generation distributed Bragg gratings were formed on the tops of the substrates (BK7 glass substrate), which had six bilayers of ~120 nm SiO and ~40 nm TiO and 40 nm of TiO on the top. The SPP sample consisted of the BK7 glass prism and a gold layer (45 nm). Numerical calculations of the optical dispersions and the experimental TIRE data have shown that SPP resonance overtake the BSWs in wavelength scanning by a factor of about 17. However, for the ellipsometric parameters and in the vicinity of excitations, the BSW sensitivity is comparable with SPP. The obtained resolutions were , for the SPP and , for the BSW. The capabilities of both surface excitations are discussed from the sensitivity point of view in the design of these advanced biosensors.
机译:使用全内反射椭圆光度法(TIRE)激发和研究表面等离振子极化(SPP)和Bloch表面波(BSWs)共振的灵敏度特征。对于BSW的生成,在基板(BK7玻璃基板)的顶部形成分布式布拉格光栅,该布拉格光栅具有六个双层,分别为〜120 nm SiO和〜40 nm TiO和40 nm TiO。 SPP样品由BK7玻璃棱镜和一个金层(45 nm)组成。光学色散和实验性TIRE数据的数值计算表明,在波长扫描中,SPP共振比BSW约高17倍。但是,对于椭偏参数和激发附近,BSW灵敏度可与SPP媲美。对于SPP和BSW,获得的分辨率为。在这些先进的生物传感器的设计中,从灵敏度的角度讨论了两种表面激发的能力。

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