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首页> 外文期刊>Applied optics >Linear control of the spectral characteristics of wavelength-selective components with a high-index tapered thin-film planar waveguide and a single-mode half-coupler
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Linear control of the spectral characteristics of wavelength-selective components with a high-index tapered thin-film planar waveguide and a single-mode half-coupler

机译:使用高折射率锥形薄膜平面波导和单模半耦合器线性控制波长选择组件的光谱特性

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摘要

A simple system of linearly tunable fiber-film wavelength-dependent components is demonstrated that includes a linearly tapered high-index thin-film planar waveguide (PWG) evanescently coupled by a single-mode-fiber half-coupler. We present experimental and theoretical results for the linear tuning of spectral responses such as coupled power, resonance position (λ_(o)), and fiber output-light polarization through position shifting of the linearly tapered PWG, in the direction of the propagating light in the fiber, over the half-coupler block. We achieved almost linear control of the spectral response by changing the temperature of mixture-of-oils and overlay-doped poly(methyl methacrylate) PWG’s when the refractive index of the system decreases with temperature. The variation in thickness of the tapered film is along the direction of the interaction length of the system. Linear tapered PWG’s that comprised a mixture of oils, BK7 glass, and overlay-doped PMMA with high refractive indices were fabricated that could operate the device at lower and higher modes. We investigated the dependence of tuning λ_(o) on the PWG mode. Tuning by shifting of a linear tapered PWG over a fiber half-block is mode dependent, whereas tuning by changing the refractive index of a uniform PWG is mode independent. Wavelength shift △λ_(o) is found to decrease with an increase in the resonant PWG mode number m for linearly tapered PWG’s. A fiber-to-asymmetric linear tapered-PWG coupler, which maintains the taper slope to within a specific limit, can function as a linearly tunable polarizer for the light in the fiber.
机译:演示了一个简单的线性可调光纤薄膜波长相关组件系统,该系统包括一个线性锥形高折射率薄膜平面波导(PWG),该波导通过单模光纤半耦合器渐逝耦合。我们给出了线性响应的光谱响应的线性调谐的实验和理论结果,例如耦合功率,谐振位置(λ_(o))和通过线性锥形PWG沿光在传播方向上的位置偏移的光纤输出光偏振。光纤,在半耦合器模块上。当系统的折射率随温度降低时,我们可以通过改变油混合物和覆层掺杂的聚(甲基丙烯酸甲酯)PWG的温度来实现光谱响应的几乎线性控制。锥形膜厚度的变化是沿着系统相互作用长度的方向。线性锥形PWG由油,BK7玻璃和高折射率的覆层掺杂PMMA组成,可在较低和较高模式下运行。我们研究了在PWG模式下调整λ_(o)的依赖性。通过在光纤半块上移动线性锥形PWG进行的调整与模式有关,而通过更改均匀PWG的折射率的调整与模式无关。对于线性锥形PWG,发现波长偏移△λ_(o)随着谐振PWG模式数m的增加而减小。光纤到非对称线性锥形PWG耦合器可将锥度斜率保持在特定限制内,可以用作光纤中光的线性可调偏振器。

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