FUNDAMENTAL AREAS OF PHENOMENOLOGY(INCLUDING APPLICATIONS) |
|
|
|
|
Multiple Dissipative Solitons in a Long-Cavity Normal-Dispersion Mode-Locked Yb-Doped Fiber Laser |
ZHAO Guang-Zhen, XIAO Xiao-Sheng, MEI Jia-Wei, YANG Chang-Xi** |
State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments, Tsinghua University, Beijing 100084
|
|
Cite this article: |
ZHAO Guang-Zhen, YANG Chang-Xi, XIAO Xiao-Sheng et al 2012 Chin. Phys. Lett. 29 034207 |
|
|
Abstract Transitional operations of multiple dissipative solitons in a long-cavity normal-dispersion Yb-doped fiber laser are experimentally investigated. Multiple dissipative solitons, including a stable soliton pair and a soliton triplet are observed by increasing the pump power or adjusting the polarization controllers. Two main boundaries of the stable asymmetric soliton and oscillating soliton are found between steady mode-locking. Moreover, multiple dissipative solitons with greater quantities of solitons are observed with pump power increasing. The experimental results agree well with a previous numerical study of multiple dissipative solitons.
|
Keywords:
42.55.Wd
42.60.Fc
42.65.Tg
42.65.Sf
|
|
Received: 28 November 2011
Published: 11 March 2012
|
|
PACS: |
42.55.Wd
|
(Fiber lasers)
|
|
42.60.Fc
|
(Modulation, tuning, and mode locking)
|
|
42.65.Tg
|
(Optical solitons; nonlinear guided waves)
|
|
42.65.Sf
|
(Dynamics of nonlinear optical systems; optical instabilities, optical chaos and complexity, and optical spatio-temporal dynamics)
|
|
|
|
|
[1] Renninger W H, Chong A and Wise F W 2010 J. Opt. Soc. Am. B 27 1978
[2] Lin J H, Wang D and Lin K H 2011 Laser Phys. Lett. 8 66
[3] Renninger W H, Chong A and Wise F W 2008 Phys. Rev. A 77 023814
[4] Wise F W, Chong A and Renninger W H 2008 Laser & Photon. Rev. 2 58
[5] Ilday F O, Buckley J R, Clark W G and F Wise W 2004 Phys. Rev. Lett. 92 213902
[6] Zhao L M, Tang D Y, Zhang H, Cheng T H, Tam H Y and Lu C 2007 Opt. Lett. 32 1086
[7] Chong A, Renninger W H and Wise F W 2007 Opt. Lett. 32 2408
[8] Tian X L, Tang M, Cheng X P, Shum P P, Gong Y D and Lin C L 2009 Opt. Express 17 7222
[9] Tian X L, Tang M, Shum P P, Gong Y D, Lin C L Fu S N and Zhang T S 2009 Opt. Lett. 34 1432
[10] Zhang M, Chen L L, Zhou C, Cai Y, Ren L and Zhang Z G 2009 Laser Phys. Lett. 6 657
[11] Senoo Y, Nishizawa N, Sakakibara, Sumimura K, Itoga E, Kataura H and Itoh K 2010 Opt. Express 27 20673
[12] Popa D, Sun Z, Torrisi F, Hasan T, Wang F and Ferrari A C 2010 CLEO/QELS, 978 Digital Object Identifier
[13] Kong L J, Xiao X S and Yang C X 2010 Laser Phys. Lett. 7 359
[14] Tang D Y, Zhang H and Zhao L M 2009 Opt. Express 17 5580
[15] Abdelalim M A, Logvin Y, Khali D A, and Anis H 2009 Opt. Express 17 13128
[16] Govind P A 2002 Nonlinear Fiber Optics 3rd edn (Hoboken, NJ: Wiley) p 64
[17] Anderson D, Desaix M, Lisak M and Quiroga T M L 1992 J. Opt. Soc. Am. B 9 1358
[18] Martel G, Chédot C, Hideur A and Grelu P 2008 Fiber. Integr. Opt. 27 320
[19] Logvin Y and Anis H 2007 Opt. Express 15 13607
[20] Abdelalim M A, Logvin Y, Khalil D A and Anis H 2009 Opt. Express 17 2264
[21] Wang L R, Liu X M, Gong Y K, Mao D and Li X H 2010 Appl. Opt. 49 2665
[22] Agrawal G P 1990 J. Opt. Soc. Am. B 7 1072
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|