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Label-free biosensing with a multi-box sub-wavelength phase-shifted Bragg grating waveguide

机译:多盒亚波长相移布拉格光栅波导的无标记生物传感

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摘要

Sub-wavelength grating (SWG) metamaterials have been considered to provide promising solutions in the development of next-generation photonic integrated circuits. In recent years, increasied interest has been paid to silicon photonic planar biosensors based on SWG geometries for performance enhancement. In this work, we demonstrate a highly sensitive label-free phase-shifted Bragg grating (PSBG) sensing configuration, which consists of sub-wavelength block arrays in both propagation and transverse directions. By introducing salt serial dilutions and electrostatic polymers assays, bulk and surface sensitivities of the proposed sensor are characterized, obtaining measured results up to 579.2 nm/RIU and 1914 pmm, respectively. Moreover, the proposed multi-box PSBG sensor presents an improved quality factor as high as 8000, roughly 3-fold of the microring-based counterpart, which further improves the detection limit. At last, by employing a biotin-streptavidin affinity assay, the capability for small molecule monitoring is exemplified with a minimum detectable concentration of biotin down to 2.28×108M.
机译:人们已考虑使用亚波长光栅(SWG)超材料为下一代光子集成电路的开发提供有希望的解决方案。近年来,人们越来越关注基于SWG几何形状的硅光子平面生物传感器,以提高性能。在这项工作中,我们演示了一种高度敏感的无标签相移布拉格光栅(PSBG)感应配置,该配置由在传播方向和横向方向上的亚波长块阵列组成。通过引入盐系列稀释液和静电聚合物测定法,可以对拟议传感器的体积和表面灵敏度进行表征,分别获得高达579.2 nm / RIU和1914 pm / nm的测量结果。此外,所提出的多盒式PSBG传感器具有高达 8000 ,大约是基于微环的对应物的3倍,从而进一步提高了检测限。最后,通过使用生物素-链霉亲和素亲和力测定法,以小分子可检测浓度低至 2.28 × 10 8 M

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