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Analysis of Brillouin frequency shift and acoustic waves in a hollow optical fiber

机译:中空光纤中布里渊频移和声波的分析

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We propose and demonstrate a new method to manipulate the Brillouin frequency shift in silica optical fiber by introducing a silica hollow optical fiber (HOF) waveguide structure. Propagation characteristics of acoustic waves guided along the HOF were theoretically analyzed, and the corresponding Brillouin frequency shifts were measured by a Brillouin optical-correlation domain-analysis system. We experimentally observed that Brillouin frequency shift v_(B) monotonically increases as a function of the central air-hole radius, which showed good agreement with the simulation results. We confirmed that a precise control of Brillouin frequency shift can be obtained by controlling the waveguide parameters of the HOF.
机译:我们提出并演示了一种通过引入二氧化硅空心光纤(HOF)波导结构来控制二氧化硅光纤中布里渊频移的新方法。从理论上分析了沿HOF引导的声波的传播特性,并通过布里渊光学相关域分析系统测量了相应的布里渊频移。我们通过实验观察到,布里渊频移v_(B)作为中心气孔半径的函数单调增加,这与仿真结果显示出很好的一致性。我们确认可以通过控制HOF的波导参数来获得对布里渊频移的精确控制。

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