Jeong Y, Baek S, Dupriez P, Maran J-N, Sahu J K, Nilsson J, Lee B
Optoelectronics Research Centre, University of Southampton, Southampton SO17 1BJ, United Kingdom.
Opt Express. 2008 Nov 24;16(24):19865-71. doi: 10.1364/oe.16.019865.
We investigate the thermal characteristics of a polymer-clad fiber laser under natural convection when it is strongly pumped up to the damage point of the fiber. For this, we utilize a temperature sensing technique based on a fiber Bragg grating sensor array. We have measured the longitudinal temperature distribution of a 2.4-m length ytterbium-sensitized erbium-doped fiber laser that was end-pumped at approximately 975 nm. The measured temperature distribution decreases exponentially, approximately, decaying away from the pump-launch end. We attribute this to the heat dissipation of absorbed pump power. The maximum temperature difference between the fiber ends was approximately 190 K at the maximum pump power of 60.8 W. From this, we estimate that the core temperature reached approximately 236 degrees C.
我们研究了聚合物包层光纤激光器在自然对流条件下,当被强烈泵浦至光纤损伤点时的热特性。为此,我们采用了基于光纤布拉格光栅传感器阵列的温度传感技术。我们测量了一根长度为2.4米、在约975纳米处进行端面泵浦的镱敏化铒掺杂光纤激光器的纵向温度分布。测量得到的温度分布大致呈指数下降,从泵浦输入端向外衰减。我们将此归因于吸收的泵浦功率的热耗散。在最大泵浦功率60.8瓦时,光纤两端的最大温差约为190开尔文。据此,我们估计纤芯温度达到了约236摄氏度。