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Items: 1 to 20 of 95

1.

Soliton absorption spectroscopy.

Kalashnikov VL, Sorokin E.

Phys Rev A. 2010 Jan;1001. pii: 2739.

2.

Chirped dissipative soliton absorption spectroscopy.

Kalashnikov VL, Sorokin E, Sorokina IT.

Opt Express. 2011 Aug 29;19(18):17480-92. doi: 10.1364/OE.19.017480.

PMID:
21935114
3.

Modelocked cavity--enhanced absorption spectroscopy.

Gherman T, Romanini D.

Opt Express. 2002 Sep 23;10(19):1033-42.

PMID:
19451961
4.

A passively mode-locked femtosecond soliton fiber laser at 1.5 microm with a CNT-doped polycarbonate saturable absorber.

Shohda F, Shirato T, Nakazawa M, Komatsu K, Kaino T.

Opt Express. 2008 Dec 22;16(26):21191-8.

PMID:
19104548
5.

Graphene-filled hollow optical fiber saturable absorber for efficient soliton fiber laser mode-locking.

Choi SY, Cho DK, Song YW, Oh K, Kim K, Rotermund F, Yeom DI.

Opt Express. 2012 Feb 27;20(5):5652-7. doi: 10.1364/OE.20.005652.

PMID:
22418373
6.

An 88 fs fiber soliton laser using a quantum well saturable absorber with an ultrafast intersubband transition.

Shohda F, Nakazawa M, Akimoto R, Ishikawa H.

Opt Express. 2009 Dec 7;17(25):22499-504. doi: 10.1364/OE.17.022499.

PMID:
20052174
7.

Ultrafast erbium-doped fiber laser mode-locked by a CVD-grown molybdenum disulfide (MoS2) saturable absorber.

Xia H, Li H, Lan C, Li C, Zhang X, Zhang S, Liu Y.

Opt Express. 2014 Jul 14;22(14):17341-8. doi: 10.1364/OE.22.017341.

PMID:
25090547
8.

Pulse width shaping of passively mode-locked soliton fiber laser via polarization control in carbon nanotube saturable absorber.

Jeong H, Choi SY, Rotermund F, Yeom DI.

Opt Express. 2013 Nov 4;21(22):27011-6. doi: 10.1364/OE.21.027011.

PMID:
24216924
9.

Flexible graphene saturable absorber on two-layer structure for tunable mode-locked soliton fiber laser.

Xin W, Liu ZB, Sheng QW, Feng M, Huang LG, Wang P, Jiang WS, Xing F, Liu YG, Tian JG.

Opt Express. 2014 May 5;22(9):10239-47. doi: 10.1364/OE.22.010239.

PMID:
24921727
10.

Soliton polarization dynamics in fiber lasers passively mode-locked by the nonlinear polarization rotation technique.

Wu J, Tang DY, Zhao LM, Chan CC.

Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Oct;74(4 Pt 2):046605. Epub 2006 Oct 6.

PMID:
17155190
11.

Solitonlike propagation in photorefractive crystals with large optical activity and absorption.

Fazio E, Babin V, Bertolotti M, Vlad V.

Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Jul;66(1 Pt 2):016605. Epub 2002 Jul 22.

PMID:
12241498
12.
13.
14.

Soliton dynamics of symmetry-endowed two-soliton solutions of the nonlinear Schrodinger equation.

Panoiu NC, Mihalache D, Mazilu D, Crasovan LC, Mel'nikov IV, Lederer F.

Chaos. 2000 Sep;10(3):625-640.

PMID:
12779412
15.

Spectral control of an alexandrite laser for an airborne water-vapor differential absorption lidar system.

Ponsardin P, Higdon NS, Grossmann BE, Browell EV.

Appl Opt. 1994 Sep 20;33(27):6439-50. doi: 10.1364/AO.33.006439.

PMID:
20941182
16.

[Technique progress of high-precision gas absorption spectroscopy with femtosecond optical frequency comb].

Yang HL, Wei HY, Li Y, Ren LB, Zhang HY.

Guang Pu Xue Yu Guang Pu Fen Xi. 2014 Feb;34(2):335-9. Chinese.

PMID:
24822396
17.

Femtosecond soliton mode-locked laser based on ytterbium-doped photonic bandgap fiber.

Isomäki A, Okhotnikov OG.

Opt Express. 2006 Oct 2;14(20):9238-43.

PMID:
19529305
18.

Trapped pulse generation by femtosecond soliton pulse in birefringent optical fibers.

Nishizawa N, Goto T.

Opt Express. 2002 Mar 11;10(5):256-61.

PMID:
19436353
19.
20.

Ultrafast nonlinear optical properties of thin-solid DNA film and their application as a saturable absorber in femtosecond mode-locked fiber laser.

Khazaeinezhad R, Hosseinzadeh Kassani S, Paulson B, Jeong H, Gwak J, Rotermund F, Yeom DI, Oh K.

Sci Rep. 2017 Jan 27;7:41480. doi: 10.1038/srep41480.

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