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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Design for tunable optofluidic optical coupler with large dynamic range
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Design for tunable optofluidic optical coupler with large dynamic range

机译:具有大动态范围的可调谐精光光学耦合器的设计

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摘要

A novel scheme for tunable optofluidic optical coupler is proposed by combining directional coupling waveguide structures with microfluidic channel. The normalized optical power at two output ports can be dynamically manipulated by controlling the refractive index of liquid mixture in microfluidic channel. Its optical performance is numerically investigated by employing the beam propagation method (BPM). The simulated results show that the dynamic range of over 45 dB, and optical loss of below 0.06 dB can be easily achieved, and furthermore the dependence of polarization states and operation wavelength in the range from 1500 nm to 1600 nm are very low in our designed device. In addition, the tunable optofluidic coupler has advantages including simple structure and large fabrication tolerance. Accordingly, our proposed device offers a new approach for manipulating optical power output, which has wide potential application in optofluidic systems.
机译:通过将定向耦合波导结构与微流体通道组合,提出了一种用于可调谐的邻接光学耦合器的新颖方案。 通过控制微流体通道中的液体混合物的折射率,可以动态地操纵两个输出端口处的归一化光功率。 通过采用光束传播方法(BPM),在数值研究其光学性能。 模拟结果表明,可以容易地实现45dB的动态范围,低于0.06dB的光学损失,此外,在我们设计的1500nm至1600nm的范围内的偏振状态和操作波长的依赖性非常低。 设备。 另外,可调谐的邻接光流体耦合器具有包括简单结构和大的制造公差的优点。 因此,我们所提出的装置提供了一种用于操纵光功率输出的新方法,该方法在邻透流体系统中具有宽的潜在应用。

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