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Effect of dispersion on sensing parameters of a racetrack resonator-based biosensor at 850 nm

机译:分散对850nm的赛道谐振器基生物传感器感测参数的影响

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In this paper, the effect of dispersion on sensing parameters of a racetrack resonator-based biosensor is studied. It is shown that dispersion has a significant effect in biosensing characteristics of a resonator designed with silicon-oxy- nitride (SiON) waveguides in a racetrack configuration. Based on the results, high sensitivity (S) can be achieved using a SiON racetrack resonator as a biosensing device. Simultaneously, this device has a high total quality factor (Q(t)). The highest S for a transverse electric whispering gallery mode (TE WGM) of 1 (2) is found to be 87.82 (434.94) nm/RIU at an optimized resonator radius of 69 mu m (19 mu m). At the same time, the highest Q(t) factor of similar to 4.6 x 10(4) is obtained for TE WGM 1 and 2, at biological cladding. These amounts of S and Q(t) factors result in an ultrahigh figure of merit (FOM) of 4766 RIU-1 and 23705 RIU-1, respectively, for TEWGM 1 and 2. Based on the FOM calculations, our sensor structure performs 237 orders of magnitude better than surface plasmon resonance devices for bulk refractometric sensing. Device analysis is done by simple, fast, and reliable analytical methods. The model results are validated through comparison with experimental reports. (c) 2018 Optical Society of America
机译:本文研究了色散对基于赛道谐振器的生物传感器的感测参数的影响。结果表明,分散体在播放构造中具有硅 - 氧化(SiON)波导的谐振器的生物传感特性具有显着影响。基于该结果,可以使用Sion赛道谐振器作为生物传感装置来实现高灵敏度。同时,该装置具有高总质量因子(Q(T))。横向电气耳语廊道模式(TE WGM)的最高S为1(2),是87.82(434.94)NM / RIU,优化的谐振器半径为69μm(19μm)。同时,在生物包层处,为TE WGM 1和2获得类似于4.6×10(4)的最高Q(T)因子。这些S和Q(t)的因素分别导致4766 Riu-1和23705 Riu-1的超高值(FOM),用于TEWGM 1和2.根据FOM计算,我们的传感器结构执行237比散装折射测量传感的表面等离子体谐振装置更好的数量级。设备分析通过简单,快速,可靠的分析方法进行。通过与实验报告的比较验证了模型结果。 (c)2018年光学学会

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