Kuo Shu-Ming, Huang Yu-Wen, Yeh Szu-Ming, Cheng Wood-Hi, Lin Che-Hsin
Department of Mechanical and Electro-mechanical Engineering, National Sun Yat-sen University, Kaohsiung, Taiwan.
Opt Express. 2011 Sep 12;19(19):18372-9. doi: 10.1364/OE.19.018372.
The optical transmission properties of photonic crystal fibers (PCFs) can be manipulated by modifying the pattern arrangement of the air channels within them. This paper presents a novel MEMS-based technique for modifying the optical transmission properties of commercial photonic-crystal fiber (PCF) by selectively filling the voids within the fiber structure with liquid crystals. In the proposed approach, an un-cured SU-8 ring pattern with a thickness of 5 μm is fabricated using a novel stamping method. The PCF is then brought into contact with the SU-8 pattern and an infra-red (IR) laser beam is passed through the fiber in order to soften the SU-8 surface; thereby selectively sealing some of the air channels with molten SU-8. Liquid crystals (LCs) are then infiltrated into the un-sealed holes in the PCF via capillary effects in order to modify the transmission properties of the PCF. Two selectively-filled PCFs are fabricated, namely an inner-ring LC-PCF and a single-line LC-PCF, respectively. It is shown that the two LC-PCFs exhibit significantly different optical behaviors. The practical applicability of the proposed selective-filling approach is demonstrated by fabricating an electric field sensor. The experimental results show that the sensor has the ability to measure electric fields with an intensity of up to 40 kV/cm.
光子晶体光纤(PCF)的光传输特性可通过改变其内部空气通道的图案排列来操控。本文提出了一种基于微机电系统(MEMS)的新技术,通过用液晶选择性地填充光纤结构中的空隙来改变商用光子晶体光纤(PCF)的光传输特性。在所提出的方法中,使用一种新颖的压印方法制作厚度为5μm的未固化SU-8环形图案。然后使PCF与SU-8图案接触,并让红外(IR)激光束穿过光纤以软化SU-8表面,从而用熔化的SU-8选择性地密封一些空气通道。随后,液晶(LC)通过毛细作用渗入PCF中未密封的孔中,以改变PCF的传输特性。分别制作了两种选择性填充的PCF,即内环LC-PCF和单线LC-PCF。结果表明,这两种LC-PCF表现出显著不同的光学行为。通过制作电场传感器证明了所提出的选择性填充方法的实际适用性。实验结果表明,该传感器能够测量强度高达40 kV/cm的电场。