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Breaking the trade-off between Q-factor and sensitivity for high-Q slot mode photonic crystal nanobeam cavity biosensors with optomechanical feedback

机译:打破具有光机械反馈的高Q缝隙模式光子晶体纳米束腔生物传感器的Q因子和灵敏度之间的权衡

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摘要

Here, a method to eliminate the trade-off between quality factor (Q-factor) and sensitivity of a one dimensional slot modephotonic crystal nanobeam cavity biosensor is presented. Applied method utilizes an optomechanical feedback mechanismin order to generate transverse gradient optical forces inside the cavity. A pump mode is utilized in order to generate theoptical force, triggered by intrusion of analyte into the background medium. The amount of generated force is controlledvia an interference mechanism at the output realized by the feedback loop. By utilizing created optical force, slot width ofthe nanobeam cavity is dynamically tuned and the quality factor degradation due to the decrease in the refractive indexcontrast of the cavity is compensated by enhancing the field confinement inside the cavity. With the contribution of theslot width tuning to the resonant wavelength shift, sensitivity of the biosensor is increased without any degradation of theQ-factor. Numerical analyses regarding the cavity design and the elimination of trade-off are provided. Obtained resultsshow that the both performance can be increased at the same time.
机译:在这里,提出了一种消除一维缝隙模式\ r \ n光子晶体纳米束腔生物传感器的品质因数(Q因数)和灵敏度之间权衡的方法。应用的方法利用光机械反馈机制来在腔体内产生横向梯度光学力。利用泵模式以产生由分析物侵入背景介质触发的正向力。通过反馈回路实现的输出处的干扰机制来控制所产生的力的大小。通过利用产生的光力,动态调整纳米束腔的缝隙宽度,并通过增强腔内部的电场限制来补偿由于腔的折射率降低而导致的品质因数降低。通过\ n \ n槽宽度调谐对共振波长偏移的贡献,生物传感器的灵敏度得以提高,而\ n \ nQ因子没有任何下降。提供了有关型腔设计和消除折衷的数值分析。获得的结果\ r \ n表明两者的性能可以同时提高。

著录项

  • 来源
  • 会议地点 1605-7422;2410-9045
  • 作者

    Mertcan Erdil; Serdar Kocaman;

  • 作者单位

    Dept. of Electrical Electronics Engineering, Middle East Technical University,Ankara, TURKEY;

    Dept. of Electrical Electronics Engineering, Middle East Technical University,Ankara, TURKEY;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
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