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All fiber tunable- or dual-wavelength Yb-doped fiber laser covering from dissipative soliton to dissipative soliton resonance
Wang ZK(王兆坤); Du ST(杜松涛); Wang JH(王建华); Zou F(邹峰); Wang ZW(王子薇); Wu WD(吴闻迪); Zhou J(周军); junzhousd@mail.siom.ac.cn
2016
Source PublicationChin. Opt. Lett.
Volume14Issue:4
AbstractIn this Letter, a simple and passively mode-locking Yb-doped all fiber laser using a nonlinear polarization rotation technique operating under dissipative soliton (DS) or dissipative soliton resonance (DSR) conditions is proposed. Furthermore, using a combination of a bandpass filter and a Loyt filter, tunable single-wavelength or dual-wavelength operation under two different conditions is realized, respectively. The tunable single-wavelength DS laser has a 5 nm tuning range from 1029 to 1034 nm with a pulse width of 110 ps. The tunable single-wavelength DSR operation laser has a range of 4 nm. In-depth research on the mechanism of the conversion between DS and DSR is carried out. Particularly, under dual-wavelength DSR operation, the obtained step-like pulses consist of two rectangular pulses with different energies. This work could help give a deeper insight into normal dispersion pulses.
SubtypeArticle
Department空间
DOI10.3788/COL201614.041401
Funding OrganizationNational High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of National Natural Science Foundation of China [U1330134]; project of Shandong Province Higher Educational Science and Technology Program [J13LJ06]; Nation ; National High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of National Natural Science Foundation of China [U1330134]; project of Shandong Province Higher Educational Science and Technology Program [J13LJ06]; Nation ; National High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of National Natural Science Foundation of China [U1330134]; project of Shandong Province Higher Educational Science and Technology Program [J13LJ06]; Nation ; National High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of National Natural Science Foundation of China [U1330134]; project of Shandong Province Higher Educational Science and Technology Program [J13LJ06]; Nation
Indexed BySCI
Funding OrganizationNational High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of National Natural Science Foundation of China [U1330134]; project of Shandong Province Higher Educational Science and Technology Program [J13LJ06]; Nation ; National High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of National Natural Science Foundation of China [U1330134]; project of Shandong Province Higher Educational Science and Technology Program [J13LJ06]; Nation ; National High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of National Natural Science Foundation of China [U1330134]; project of Shandong Province Higher Educational Science and Technology Program [J13LJ06]; Nation ; National High Technology Research and Development Program of China [2014AA041901]; NSAF Foundation of National Natural Science Foundation of China [U1330134]; project of Shandong Province Higher Educational Science and Technology Program [J13LJ06]; Nation
WOS IDWOS:000374886500008
Citation statistics
Document Type期刊论文
Identifierhttp://ir.siom.ac.cn/handle/181231/28353
Collection空间激光信息技术研究中心
Corresponding Authorjunzhousd@mail.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,Du ST,Wang JH,et al. All fiber tunable- or dual-wavelength Yb-doped fiber laser covering from dissipative soliton to dissipative soliton resonance[J]. Chin. Opt. Lett.,2016,14(4).
APA 王兆坤.,杜松涛.,王建华.,邹峰.,王子薇.,...&junzhousd@mail.siom.ac.cn.(2016).All fiber tunable- or dual-wavelength Yb-doped fiber laser covering from dissipative soliton to dissipative soliton resonance.Chin. Opt. Lett.,14(4).
MLA 王兆坤,et al."All fiber tunable- or dual-wavelength Yb-doped fiber laser covering from dissipative soliton to dissipative soliton resonance".Chin. Opt. Lett. 14.4(2016).
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