阐述了一种获得高功率3~5μm中红外激光输出的实验方案,即先通过高功率1.94μm光源抽运Ho:YLF晶体,获得高重复频率2.05μm激光输出,通过端抽运放大方式,提升2.05μm激光功率水平,最终2.05μm激光抽运光参量振荡器(OPO)实现高功率中...阐述了一种获得高功率3~5μm中红外激光输出的实验方案,即先通过高功率1.94μm光源抽运Ho:YLF晶体,获得高重复频率2.05μm激光输出,通过端抽运放大方式,提升2.05μm激光功率水平,最终2.05μm激光抽运光参量振荡器(OPO)实现高功率中波激光输出。在水冷工作体制下获得了重复频率5 k Hz、最大功率26.9 W的中波输出,脉冲宽度为24.4 ns,2.05μm到3~5μm的光光转换效率达50%,通过角度调谐获得不同波长的中红外激光输出,验证了该实验方案作为一种获得高功率、高效率、高重复频率中红外激光输出工作方式的可行性。展开更多
用棒管法拉制了Tm3+/Ho3+掺杂的碲酸盐微结构光纤,并获得了2μm的激光输出。以1 560 nm的Er3+掺杂石英光纤激光器作为泵浦源,在22 cm长的微结构光纤中,得到了最大功率为8.34 m W、波长为2 065 nm的连续激光输出,泵浦光功率为507 m W,斜...用棒管法拉制了Tm3+/Ho3+掺杂的碲酸盐微结构光纤,并获得了2μm的激光输出。以1 560 nm的Er3+掺杂石英光纤激光器作为泵浦源,在22 cm长的微结构光纤中,得到了最大功率为8.34 m W、波长为2 065 nm的连续激光输出,泵浦光功率为507 m W,斜率效率为2.97%。研究结果表明,Tm3+/Ho3+共掺碲酸盐微结构光纤是一种用于研制2μm激光器的理想材料。展开更多
We integrally demonstrate 2μm mode-locked pulses performances in all-fiber net anomalous dispersion cavity.Stable mode-locking operations with the center wavelength around 1950–1980 nm can be achieved by using the n...We integrally demonstrate 2μm mode-locked pulses performances in all-fiber net anomalous dispersion cavity.Stable mode-locking operations with the center wavelength around 1950–1980 nm can be achieved by using the nonlinear polarization rotation structure and properly designing the dispersion management component.Conventional soliton is firstly obtained with a total anomalous dispersion cavity.Due to the contribution of commercial ultra-high numerical aperture fibers,net dispersion is reduced to-0.077 ps2.So that stretched pulse with 19.4 nm optical bandwidth is obtained and the de-chirped pulse-width can reach 312 fs using extra-cavity compression.Under pump power greater than 890 mW,stretched pulse can evolve into noise-like pulse with 41.3 nm bandwidth.The envelope and peak of such broadband pulse can be compressed with up to 2.2 ps and 145 fs,respectively.The single pulse energy of largely chirped stretched and noise-like pulse can reach 1.785 nJ and 1.53 nJ,respectively.Furthermore,extra-cavity compression can also contribute to a significant increase of peak power.展开更多
文摘阐述了一种获得高功率3~5μm中红外激光输出的实验方案,即先通过高功率1.94μm光源抽运Ho:YLF晶体,获得高重复频率2.05μm激光输出,通过端抽运放大方式,提升2.05μm激光功率水平,最终2.05μm激光抽运光参量振荡器(OPO)实现高功率中波激光输出。在水冷工作体制下获得了重复频率5 k Hz、最大功率26.9 W的中波输出,脉冲宽度为24.4 ns,2.05μm到3~5μm的光光转换效率达50%,通过角度调谐获得不同波长的中红外激光输出,验证了该实验方案作为一种获得高功率、高效率、高重复频率中红外激光输出工作方式的可行性。
文摘用棒管法拉制了Tm3+/Ho3+掺杂的碲酸盐微结构光纤,并获得了2μm的激光输出。以1 560 nm的Er3+掺杂石英光纤激光器作为泵浦源,在22 cm长的微结构光纤中,得到了最大功率为8.34 m W、波长为2 065 nm的连续激光输出,泵浦光功率为507 m W,斜率效率为2.97%。研究结果表明,Tm3+/Ho3+共掺碲酸盐微结构光纤是一种用于研制2μm激光器的理想材料。
基金This work was supported in part by the National Natural Science Foundation of China 61975021in part by the Science and Technology Project of Jilin Province under Grant 20170414041GHin part by the Research Project of Jilin Provincial Education Department under Grant JJKH20181090KJ.
文摘We integrally demonstrate 2μm mode-locked pulses performances in all-fiber net anomalous dispersion cavity.Stable mode-locking operations with the center wavelength around 1950–1980 nm can be achieved by using the nonlinear polarization rotation structure and properly designing the dispersion management component.Conventional soliton is firstly obtained with a total anomalous dispersion cavity.Due to the contribution of commercial ultra-high numerical aperture fibers,net dispersion is reduced to-0.077 ps2.So that stretched pulse with 19.4 nm optical bandwidth is obtained and the de-chirped pulse-width can reach 312 fs using extra-cavity compression.Under pump power greater than 890 mW,stretched pulse can evolve into noise-like pulse with 41.3 nm bandwidth.The envelope and peak of such broadband pulse can be compressed with up to 2.2 ps and 145 fs,respectively.The single pulse energy of largely chirped stretched and noise-like pulse can reach 1.785 nJ and 1.53 nJ,respectively.Furthermore,extra-cavity compression can also contribute to a significant increase of peak power.