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Tunable and Switchable Narrow Bandwidth Semiconductor-Saturable Absorber Mirror Mode-Locked Yb-Doped Fiber Laser Delivering Different Pulse Widths
Wang ZK(王兆坤); Zou F(邹峰); Wang ZW(王子薇); Du ST(杜松涛); Zhou J(周军); songtaodu@siom.ac.cn; junzhousd@siom.ac.cn
2016
Source PublicationChin. Phys. Lett.
Volume33Issue:3
AbstractThe wavelength-tunable and switchable narrow bandwidth mode-locking operation is demonstrated in an all fiber laser based on semiconductor-saturable absorber mirror (SESAM). Two narrow-band fiber Bragg gratings centered at 1029.9 nm and 1032 nm respectively with a polarization controller inserted between them are used to realize the wavelength switchable between 1029.9 nm and 1032 nm. The laser delivers different pulse widths of 7.5 ps for 1030 nm and 20 ps for 1032 nm. The maximum output power for both could reach similar to 6.5 mW at single pulse operation. The output wavelength could be tuned to about 0.9 nm intervals ranging from 1030.2 nm to 1031.1 nm and from 1032.15 nm to 1033.7 nm with the temperature change of the fiber Bragg grating, respectively.
SubtypeArticle
Department空间
DOI10.1088/0256-307X/33/3/034202
Funding OrganizationNational High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of the National Natural Science Foundation of China [U1330134]; Opening Project of Shanghai Key Laboratory of All Solid-State Laser and Applied Techniques [ ; National High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of the National Natural Science Foundation of China [U1330134]; Opening Project of Shanghai Key Laboratory of All Solid-State Laser and Applied Techniques [ ; National High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of the National Natural Science Foundation of China [U1330134]; Opening Project of Shanghai Key Laboratory of All Solid-State Laser and Applied Techniques [ ; National High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of the National Natural Science Foundation of China [U1330134]; Opening Project of Shanghai Key Laboratory of All Solid-State Laser and Applied Techniques [
Indexed BySCI
Funding OrganizationNational High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of the National Natural Science Foundation of China [U1330134]; Opening Project of Shanghai Key Laboratory of All Solid-State Laser and Applied Techniques [ ; National High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of the National Natural Science Foundation of China [U1330134]; Opening Project of Shanghai Key Laboratory of All Solid-State Laser and Applied Techniques [ ; National High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of the National Natural Science Foundation of China [U1330134]; Opening Project of Shanghai Key Laboratory of All Solid-State Laser and Applied Techniques [ ; National High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of the National Natural Science Foundation of China [U1330134]; Opening Project of Shanghai Key Laboratory of All Solid-State Laser and Applied Techniques [
WOS IDWOS:000374647900010
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Document Type期刊论文
Identifierhttp://ir.siom.ac.cn/handle/181231/28443
Collection空间激光信息技术研究中心
Corresponding Authorsongtaodu@siom.ac.cn; junzhousd@siom.ac.cn
Affiliation中国科学院上海光学精密机械研究所
Recommended Citation
GB/T 7714
Wang ZK,Zou F,Wang ZW,et al. Tunable and Switchable Narrow Bandwidth Semiconductor-Saturable Absorber Mirror Mode-Locked Yb-Doped Fiber Laser Delivering Different Pulse Widths[J]. Chin. Phys. Lett.,2016,33(3).
APA 王兆坤.,邹峰.,王子薇.,杜松涛.,周军.,...&junzhousd@siom.ac.cn.(2016).Tunable and Switchable Narrow Bandwidth Semiconductor-Saturable Absorber Mirror Mode-Locked Yb-Doped Fiber Laser Delivering Different Pulse Widths.Chin. Phys. Lett.,33(3).
MLA 王兆坤,et al."Tunable and Switchable Narrow Bandwidth Semiconductor-Saturable Absorber Mirror Mode-Locked Yb-Doped Fiber Laser Delivering Different Pulse Widths".Chin. Phys. Lett. 33.3(2016).
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