Zhu Yinian, Shum Ping, Chong Hin-Joo, Rao M, Lu Chao
Opt Express. 2003 Aug 11;11(16):1900-5. doi: 10.1364/oe.11.001900.
A strong resonance and extremely short length long-period grating (LPG) has been fabricated in a large-mode-area photonic crystal fiber (PCF) by use of a CO2 laser heat source. We believe that such a longperiod grating in pure silica PCF is the first example of a point-by-point technique. The fabrication method is simple and repeatable. The resulting LPG has been developed with eight periodic collapses within a 2.8-mmlong period of the fiber, which gives the strong resonance of core-cladding mode coupling. The lowest mode of LP01 is at a 1529.2-nm wavelength with a full width at half-maximum of ~0.7 nm and a resonance strength of -31.5 dB. The principal advantages of this LPG are that (1) it is temperature insensitive and stable, (2) the device is compact when it is packaged, and (3) it provides practical, low-cost all-fiber filters and PCF-based devices for optical fiber communications and sensing systems.
利用二氧化碳激光热源,在大模场面积光子晶体光纤(PCF)中制备出了一种具有强谐振且长度极短的长周期光栅(LPG)。我们认为,这种纯石英PCF中的长周期光栅是逐点技术的首个实例。该制备方法简单且可重复。所制备的LPG在光纤2.8毫米长的周期内有八个周期性塌陷,这产生了芯包层模式耦合的强谐振。最低的LP01模式位于1529.2纳米波长处,半高全宽约为0.7纳米,谐振强度为-31.5分贝。这种LPG的主要优点在于:(1)它对温度不敏感且稳定;(2)封装后的器件紧凑;(3)它为光纤通信和传感系统提供了实用、低成本的全光纤滤波器以及基于PCF的器件。