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1.北京工业大学 北京市激光应用技术工程技术研究中心,北京 100124
2.北京工业大学 跨尺度激光成型制造技术教育部重点实验室,北京 100124
3.北京工业大学 激光工程研究院,北京 100124
4.光电信息控制和安全技术重点实验室,天津 300308
[ "贾文增 (1995-),男,山东德州人,硕士研究生,2018年于山东大学获得学士学位,主要从事高功率光纤激光器及径向偏振光方面的研究。E-mail:wenzengjia@emails.bjut.edu.cn" ]
刘学胜(1980-),男,北京人,博士,助理研究员,2009年于北京工业大学获得博士学位,主要从事大功率脉冲光纤激光器及其应用方面的工作。E-mail:liuxuesheng@bjut.edu.cn LIU Xue-sheng, E-mail:liuxuesheng@bjut.edu.cn
收稿日期:2019-11-14,
修回日期:2020-01-06,
录用日期:2020-1-6,
纸质出版日期:2020-05-15
移动端阅览
贾文增, 刘学胜, 司汉英, 等. 基于LCP径向偏振光输出的掺镱MOPA脉冲光纤激光器[J]. 光学 精密工程, 2020,28(5):997-1004.
Wen-zeng JIA, Xue-sheng LIU, Han-ying SI, et al. Yb-doped fiber MOPA system with radially polarized output beam based on LCP vortex retarder[J]. Optics and precision engineering, 2020, 28(5): 997-1004.
贾文增, 刘学胜, 司汉英, 等. 基于LCP径向偏振光输出的掺镱MOPA脉冲光纤激光器[J]. 光学 精密工程, 2020,28(5):997-1004. DOI: 10.3788/OPE.20202805.0997.
Wen-zeng JIA, Xue-sheng LIU, Han-ying SI, et al. Yb-doped fiber MOPA system with radially polarized output beam based on LCP vortex retarder[J]. Optics and precision engineering, 2020, 28(5): 997-1004. DOI: 10.3788/OPE.20202805.0997.
为实现光纤激光器径向偏振光的高效输出,提出并搭建了基于液晶聚合物(LCP)的纳秒脉冲掺镱(Yb)主振荡器功率放大(MOPA)系统。该系统采用空间相位转换法,利用LCP涡旋半波片将全光纤MOPA激光器输出的高峰值功率、窄线宽、线偏振、高斯形分布的纳秒脉冲信号转换为横向强度呈空心环状分布的拉盖尔-高斯光。MOPA激光器系统由窄线宽连续种子源、电光强度调制器和后续的5级YDF放大器组成,通过实验获得了20.1 W的稳定LP
01
模输出。而后的LCP涡旋波片用作空间模式转换器,最终获得的平均输出功率为19.5 W,脉宽为10 ns,重复频率为10 kHz,横向剖面呈规则空心环形的径向偏振光输出,模式转换效率可达97%。另外,通过PBS测量法测得径向偏振光的模式纯度约为88.5%,兼具高功率与高纯度的优势。
This study demonstrates the use of a Liquid Crystal Polymer (LCP) vortex retarder-based Yb-Doped Fiber (YDF) MOPA system with nanosecond pulse output to achieve efficient generation of a radially polarized beam from fiber lasers. The LCP vortex half-wave plate was employed as a mode converter after the MOPA laser to efficiently convert the high-peak-power
narrow-linewidth
linearly polarized nanosecond Gaussian pulse signal into a Laguerre-Gaussian beam with a hollow-ring distribution of transverse intensity using the spatial phase conversion method. When the MOPA system consisted of a narrow-linewidth continuous seed source
an electro-optical intensity modulator and a five-stage YDF amplifier were built up. A stable LP
01
mode output with an average power of 20.1 W was obtained from the MOPA system. Subsequently
an LCP vortex half-wave plate was adopted as a spatial mode converter and a radially polarized beam output with a maximum average output power of 19.5 W
pulse width of 10 ns
and perfect hollow-ring transverse intensity was obtained at a repetition rate of 10 kHz. The mode purity measured by the PBS method is about 88.5%
which indicates that the radially polarized beam obtained has the advantages of high efficiency and high mode purity. This work can establish the foundation for the practical and highly efficient applications of radially polarized beams in the field of optical trapping
high-resolution imaging
and materials processing.
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