标题: 全正色散锁模掺镱光纤雷射之研究
The Study of All-normal Dispersion Mode-Locked Ytterbium doped Fiber Laser
作者: 陈靖中
Chen, Jing-Jung
安惠荣
Ahn, Hye-Young
显示科技研究所
关键字: 光纤雷射;镱;锁模雷射;fiber laser;ytterbium;mode-locked laser
公开日期: 2009
摘要: 本实验成功地架设了一套全正色散锁模掺镱光纤雷射,雷射腔内没有使用实体的光学带通滤波片,以偏振加波锁模机制达到锁模,并利用锁相回路技术使重复频率达到稳频。此雷射可产生重复率40 MHz、平均功率160 mW、半高宽12.8 ps的脉冲输出。之后经过自制前向泵浦掺镱光纤放大器,平均功率可达420 mW。利用中空光子晶体光纤做腔外色散补偿,可将放大后的脉冲压缩到300 fs。将压缩后的脉冲耦合入光子晶体光纤,产生960 nm到1370 nm的连续光谱,也在344 nm、429 nm、502 nm等处产生可见光契伦科夫辐射。最后我们利用锁相回路控制使锁模雷射的重复率达到稳频,回授圈外重复率的追踪稳定度在1 秒钟为 。
An ultrafast all-normal dispersion mode-locked ytterbium (Yb) doped fiber laser with no practical, optical bandpass filter is developed and the stabilization of its repetition frequency is achieved by using phase locked loop (PLL) technique. Polarization-additive pulse mode-locking (P-APM) method is employed to achieve mode-locking. The all-normal-dispersion ocsillator generates 12.8 ps (FWHM) laser pulses with 160 mW average power at 40 MHz repetition rate. Nearly triple power amplification (~ 420 mW) is achieved after forward pumped amplification and the pulsewidth of amplified pulses are externally compressed in the hollow-core photonic crystal fiber to 300 femtoseconds. The compressed laser pulses are sent into a solid core photonic crystal fiber (PCF) to generate supercontinuum (SC). The bandwidth of generated SC covers from 960 nm to 1370 nm and additionally, Cherenkov radiation at 344 nm, 429 nm, and 502 nm are observed. Finally, PLL technique is used to stabilize the repetition frequency of the mode-locked laser and the measured tracking stability of the out-of-loop repetition rate of our laser is at 1 s.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079715537
http://hdl.handle.net/11536/44818
显示于类别:Thesis