Opt Lett. 2013 Dec 15;38(24):5401-4. doi: 10.1364/OL.38.005401.
Solid-core photonic crystal fiber (PCF) with a permanent helical twist exhibits dips in its transmission spectrum at certain wavelengths. These are associated with the formation of orbital angular momentum states in the cladding. Here we investigate the tuning of these states with mechanical torque and axial tension. The dip wavelengths are found to scale linearly with both axial strain and mechanical twist rate. Analysis shows that the tension-induced shift in resonance wavelength is determined both by the photoelastic effect and by the change in twist rate, while the torsion-induced wavelength shift depends only on the change in twist rate. Twisted PCF can act as an effective optically monitored torque-tension transducer, twist sensor, or strain gauge.
具有永久螺旋扭曲的固体芯光子晶体光纤 (PCF) 在某些波长处表现出传输光谱的下降。这些与包层中轨道角动量状态的形成有关。在这里,我们研究了机械扭矩和轴向张力对这些状态的调谐。发现这些状态的下降波长与轴向应变和机械扭转率都呈线性关系。分析表明,共振波长的张应变引起的位移取决于光弹效应和扭转率的变化,而扭转引起的波长位移仅取决于扭转率的变化。扭曲的 PCF 可以用作有效的光监测扭矩-张力换能器、扭转传感器或应变计。