Design and Simulation of Novel Optofluidic ring resonator for Biomolecular Detection

سال انتشار: 1396
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 65

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شناسه ملی سند علمی:

JR_TDMA-6-2_003

تاریخ نمایه سازی: 16 مرداد 1402

چکیده مقاله:

In This study, a label-free detection method by using a novel Optofluidic ring resonator sensor (OFRR) structure is presented. Optofluidic is a developed young research subject suitable to create an appropriate cooperation between optics and fluidics. The combination of fluidic and optical methods achievable. by using the optofluidic methods makes it expedient to obtain an inventive type of sensors, which have been tried to have an ameliorate sensitivity, denseness and adaptivity.  OFRR is a recent detection method that integrates Optic and fluid technologies with low-limit and low-cost and small- sample volume detection sensitivity. The objective of this article is the detection of the tuberculosis by offering a unique and a novel useful structure that is able to fabricate. The material of the proposed structure is PDMA that is completely flexible polymer. The width of the waveguide, the waveguide length and width of the ring of the proposed structure respectively is ۵۰۰nm, ۲۵۰ nm, ۱۵۰۰ nm. Also, the inner radius of the resonator ring in ۴۷۰۰ nm. The simulation Result of proposed structure by Opti-FDTD software shown ۶۴۹ nm/RIS for the slope of the sensitivity curve.

نویسندگان

Keyvan Amini

Tabriz university, Faculty of Electrical and Computer Engineering

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  • Testa, Genni, et al. "Integrated silicon optofluidic ring resonator." Applied ...
  • Testa, G., G. Persichetti, and R. Bernini. "Design and optimization ...
  • Erickson, David, et al. "Nanofluidic tuning of photonic crystal circuits." ...
  • Passaro, Davide, et al. "All-silica hollow-core microstructured Bragg fibers for ...
  • Webb, Andrew S., et al. "Suspended-core holey fiber for evanescent-field ...
  • Coscelli, Enrico, et al. "Toward a highly specific DNA biosensor: ...
  • Almeida, Vilson R., et al. "Guiding and confining light in ...
  • Xu, Qianfan, et al. "Experimental demonstration of guiding and confining ...
  • Testa, Genni, and Romeo Bernini. "Slot and layer-slot waveguide in ...
  • Wolfe, Daniel B., et al. "Dynamic control of liquid-core/liquid-cladding optical ...
  • Bernini, R., et al. "Liquid-core/liquid-cladding integrated silicon ARROW waveguides." Optics ...
  • Takiguchi, Hiromi, et al. "Liquid/liquid optical waveguides using sheath flow ...
  • Hairer, Gabriel, and Michael J. Vellekoop. "An integrated flow-cell for ...
  • Abgrall, P., and A. M. Gue. "Lab-on-chip technologies: making a ...
  • Lee, S. J., and S. Y. Lee. "Micro total analysis ...
  • Zheng, Yi, et al. "Recent advances in microfluidic techniques for ...
  • Persichetti, Gianluca, Genni Testa, and Romeo Bernini. "High sensitivity UV ...
  • Sun, Yuze, and Xudong Fan. "Optical ring resonators for biochemical ...
  • Tanyeri, Melikhan, and Ian M. Kennedy. "Detecting single bacterial cells ...
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