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Near-infrared supercontinuum generation in conventional single mode fiber used in optical sensor

机译:光学传感器中使用的常规单模光纤中近红外超大型纤维

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The near-infrared supercontinuum light was generated in a single mode optical fiber by the femtosecond pulses from an unamplified Ti:sapphire laser. The light source possesses properties of high repetition rate, peak power, and low optical damage, and thus can used for optical sensors. Supercontinuum generation is a complex nonlinear phenomenon that is characterized by the dramatic spectral broadening of intense light pulses passing through a nonlinear material. Special fibers, such as the fluoride fiber and tapered fiber, spanning over three octaves from UV to 3.85 m and over two octaves from 370∼1550 nm, respectively, are used to generate the supercontinuum. The spectra span more than an octave and retain the longitudinal mode structure of the mode-locked laser source, which recently led to spectacular advances in optical frequency metrology. In this study, a conventional single mode optical fiber with a cladding-free central section immobilized metal nanoparticles was used to generate the near-infrared supercontinuum light. The absorption spectrum of nanoparticals on the optical fiber can be measured by the homemade tunable near-infrared supercontinuum light source from the single mode fiber. It offers a simple and cost-effective method to generate a near-infrared light source to serve for spectral measurements and achieving the fiber-optic sensing.
机译:近红外超级度亮光通过来自无杂化Ti的飞秒脉冲在单模光纤中产生:蓝宝石激光。光源具有高重复率,峰值功率和低光学损坏的性质,因此可以用于光学传感器。超连续产生是一种复杂的非线性现象,其特征在于通过非线性材料的强烈光脉冲的显着光谱扩展。特殊纤维,例如氟化物纤维和锥形纤维,跨越从UV到3.85米的三个八位八升,分别从370〜1550nm的两个八位八发术中,用于产生超连续素。光谱跨度跨越八度,并保留模式锁定激光源的纵向模式结构,最近导致光学频率计量的壮观前进。在该研究中,使用具有包覆的中央截面固定化金属纳米颗粒的传统单模光纤,用于产生近红外超不连续的光。光纤上的纳米颗粒的吸收光谱可以通过来自单模光纤的自制可调近近红外超级光源测量。它提供了一种简单且经济高效的方法,可以生成近红外光源,以用于光谱测量并实现光纤感测。

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