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首页> 外文期刊>IEEE sensors journal >On-Chip Single-Mode Optofluidic Microresonator Dye Laser Sensor
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On-Chip Single-Mode Optofluidic Microresonator Dye Laser Sensor

机译:片上单模Optof流体微生物染料激光传感器

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摘要

Optofluidic dye laser devices have great potential as coherent light sources for lab-on-a-chip applications such as sensing and spectroscopy applications, owing to their promising properties such as wide wavelength-tunability, proper microfluidic integration, and an extremely miniaturized footprint. The wide emission spectrum of dye molecules and narrow free spectral range of ring resonators, make these lasers inherently multi-mode. In this article, two polydimethylsiloxane-basedminiaturized optofluidic ring resonator dye lasers are numerically designed and investigated. First, multi-mode lasing from a single optofluidic ring resonator with a spectral linewidth of 10 nm and a threshold energy density of 2.2 mu j/mm(2) is demonstrated. Then, by exploiting two coupled optofluidic ring resonators and Vernier effect, single-mode lasing at a center wavelength of 566 nm with a spectral linewidth as small as 5.36 x 10(-4) nm is achieved. Moreover, simulations demonstrate the sensitivity of 500 nm/RIU for the proposed dye laser sensor.
机译:Optof流体染料激光器件具有很大的潜力作为芯片芯片应用的相干光源,例如感测和光谱应用,由于它们具有宽波长可调性,适当的微流体集成以及极其小型化的占地面积。染料分子的宽发射光谱和环谐振器的窄自由谱范围,使这些激光器固有地多模。在本文中,两种聚二甲基硅氧烷的基于灭硫化的晶体流体环谐振器染料在数值上设计和研究。首先,通过具有10nm的光谱线宽和阈值能量密度为2.2μJ/ mm(2)的单个替代光流环谐振器的多模激光。然后,通过利用两个耦合的优化环形谐振器和vernier效果,实现了566nm的中心波长的单模激光,其光谱线宽为5.36×10(-4)nm。此外,模拟证明了所提出的染料激光传感器的500nm / RiU的灵敏度。

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