Abstract

As a new member of transition metal dichalcogenides (TMDs), rhenium disulfide (ReS2), with a nearly unchanged direct bandgap from bulk to monolayer form, is attractive in physics and material fields. By using the optically driving deposition method, the ReS2 saturable absorber (SA) has been fabricated with a modulation depth and saturation fluence of 6.9% and 27.5 μJ/cm2, respectively. Based on the ReS2-SA, a multi-wavelength bright-dark pulse pair from a mode-locked fiber laser has been observed experimentally for the first time, to the best of our knowledge. The saturable absorbing ability of the ReS2 is attributed to the formation of the bright pulses and the dark pulses. The cross-phase modulation (XPM) caused by different wavebands of bright pulse and dark pulse support the coexisting of the bright-dark pulse pair.

© 2018 Optical Society of America under the terms of the OSA Open Access Publishing Agreement

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    [Crossref] [PubMed]
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    [Crossref]
  5. H. Y. Wang, W. C. Xu, W. J. Cao, L. Y. Wang, and J. L. Dong, “Experimental observation of bright-dark pulse emitting in an all-fiber ring cavity laser,” Laser Phys. 22(1), 282–285 (2011).
    [Crossref]
  6. Q. Y. Ning, S. K. Wang, A. P. Luo, Z. B. Lin, Z. C. Luo, and W. C. Xu, “Bright-Dark Pulse Pair in a Figure-Eight Dispersion-Managed Passively Mode-Locked Fiber Laser,” IEEE Photonics J. 4(5), 1647–1652 (2012).
    [Crossref]
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    [Crossref]
  8. E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
    [Crossref] [PubMed]
  9. H. Tian, M. L. Chin, S. Najmaei, Q. Guo, F. Xia, H. Wang, and M. Dubey, “Optoelectronic devices based on two-dimensional transition metal dichalcogenides,” Nano Res. 9(6), 1543–1560 (2016).
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  12. F. Lu, “Passively harmonic mode-locked fiber laser based on ReS2 saturable absorber,” Mod. Phys. Lett. B 31(18), 1750206 (2017).
    [Crossref]
  13. R. Zhao, J. Li, B. Zhang, X. Li, X. Su, Y. Wang, F. Lou, H. Zhang, and J. He, “Triwavelength synchronously mode-locked fiber laser based on few-layered black phosphorus,” Appl. Phys. Express 9(9), 092701 (2016).
    [Crossref]
  14. Y. Feng, W. Zhou, Y. Wang, J. Zhou, E. Liu, Y. Fu, Z. Ni, X. Wu, H. Yuan, F. Miao, B. Wang, X. Wan, and D. Xing, “Raman vibrational spectra of bulk to monolayer ReS2 with lower symmetry,” Phys. Rev. B 92(5), 054110 (2015).
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    [Crossref] [PubMed]
  16. M. Sheik-Bahae, A. A. Said, T. H. Wei, D. J. Hagan, and E. W. V. Stryland, “Sensitive measurement of optical nonlinearities using a single beam,” IEEE J. Quantum Electron. 26(4), 760–769 (1990).
    [Crossref]
  17. B. Guo, Y. Yao, Y.-F. Yang, Y.-J. Yuan, L. Jin, B. Yan, and J.-Y. Zhang, “Dual-wavelength rectangular pulse erbium-doped fiber laser based on topological insulator saturable absorber,” Photon. Res. 3(3), 94–99 (2015).
    [Crossref]
  18. Z. C. Tiu, H. Ahmad, A. Zarei, and S. W. Harun, “Generation of multi-wavelength erbium-doped fiber laser by using MoSe2 thin film as nonlinear medium and stabilizer,” Chin. Opt. Lett. 14(4), 041901 (2016).
    [Crossref]
  19. B. Guo, Y. Yao, P.-G. Yan, K. Xu, J.-J. Liu, S.-G. Wang, and Y. Li, “Dual-Wavelength Soliton Mode-Locked Fiber Laser With a WS2-Based Fiber Taper,” IEEE Photonics Technol. Lett. 28(3), 323–326 (2016).
    [Crossref]
  20. D. Mao and H. Lu, “Formation and evolution of passively mode-locked fiber soliton lasers operating in a dual-wavelength regime,” J. Opt. Soc. Am. B 29(10), 2819–2826 (2012).
    [Crossref]
  21. V. V. Afanasjev, E. M. Dianov, and V. N. Serkin, “Nonlinear pairing of short bright and dark soliton pulses by phase cross modulation,” IEEE J. Quantum Electron. 25(12), 2656–2664 (1989).
    [Crossref]
  22. M. Lisak, A. Höök, and D. Anderson, “Symbiotic solitary-wave pairs sustained by cross-phase modulation in optical fibers,” J. Opt. Soc. Am. B 7(5), 810–814 (1990).
    [Crossref]
  23. X. Su, H. Nie, Y. Wang, G. Li, B. Yan, B. Zhang, K. Yang, and J. He, “Few-layered ReS2as saturable absorber for 2.8 μm solid state laser,” Opt. Lett. 42(17), 3502–3505 (2017).
    [Crossref] [PubMed]
  24. S. Wang, H. Yu, H. Zhang, A. Wang, M. Zhao, Y. Chen, L. Mei, and J. Wang, “Broadband few-layer MoS2 saturable absorbers,” Adv. Mater. 26(21), 3538–3544 (2014).
    [Crossref] [PubMed]
  25. D. Mao, S. Zhang, Y. Wang, X. Gan, W. Zhang, T. Mei, Y. Wang, Y. Wang, H. Zeng, and J. Zhao, “WS2 saturable absorber for dissipative soliton mode locking at 1.06 and 1.55 microm,” Opt. Express 23(21), 27509–27519 (2015).
    [Crossref] [PubMed]

2017 (4)

Y. Cui, F. Lu, and X. Liu, “Nonlinear Saturable and Polarization-induced Absorption of Rhenium Disulfide,” Sci. Rep. 7, 40080 (2017).
[Crossref] [PubMed]

D. Mao, X. Cui, X. Gan, M. Li, W. Zhang, H. Lu, and J. Zhao, “Passively Q-switched and mode-locked fiber laser based on a ReS2 saturable absorber,” IEEE J. Sel. Top. Quantum Electron. 24, 1100406 (2017).

F. Lu, “Passively harmonic mode-locked fiber laser based on ReS2 saturable absorber,” Mod. Phys. Lett. B 31(18), 1750206 (2017).
[Crossref]

X. Su, H. Nie, Y. Wang, G. Li, B. Yan, B. Zhang, K. Yang, and J. He, “Few-layered ReS2as saturable absorber for 2.8 μm solid state laser,” Opt. Lett. 42(17), 3502–3505 (2017).
[Crossref] [PubMed]

2016 (4)

Z. C. Tiu, H. Ahmad, A. Zarei, and S. W. Harun, “Generation of multi-wavelength erbium-doped fiber laser by using MoSe2 thin film as nonlinear medium and stabilizer,” Chin. Opt. Lett. 14(4), 041901 (2016).
[Crossref]

R. Zhao, J. Li, B. Zhang, X. Li, X. Su, Y. Wang, F. Lou, H. Zhang, and J. He, “Triwavelength synchronously mode-locked fiber laser based on few-layered black phosphorus,” Appl. Phys. Express 9(9), 092701 (2016).
[Crossref]

H. Tian, M. L. Chin, S. Najmaei, Q. Guo, F. Xia, H. Wang, and M. Dubey, “Optoelectronic devices based on two-dimensional transition metal dichalcogenides,” Nano Res. 9(6), 1543–1560 (2016).
[Crossref]

B. Guo, Y. Yao, P.-G. Yan, K. Xu, J.-J. Liu, S.-G. Wang, and Y. Li, “Dual-Wavelength Soliton Mode-Locked Fiber Laser With a WS2-Based Fiber Taper,” IEEE Photonics Technol. Lett. 28(3), 323–326 (2016).
[Crossref]

2015 (5)

Y. Feng, W. Zhou, Y. Wang, J. Zhou, E. Liu, Y. Fu, Z. Ni, X. Wu, H. Yuan, F. Miao, B. Wang, X. Wan, and D. Xing, “Raman vibrational spectra of bulk to monolayer ReS2 with lower symmetry,” Phys. Rev. B 92(5), 054110 (2015).
[Crossref]

B. Guo, Y. Yao, J. J. Tian, Y. F. Zhao, S. Liu, M. Li, and M. R. Quan, “Observation of Bright-Dark Soliton Pair in a Fiber Laser with Topological Insulator,” IEEE Photonics Technol. Lett. 27(7), 701–704 (2015).
[Crossref]

E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
[Crossref] [PubMed]

B. Guo, Y. Yao, Y.-F. Yang, Y.-J. Yuan, L. Jin, B. Yan, and J.-Y. Zhang, “Dual-wavelength rectangular pulse erbium-doped fiber laser based on topological insulator saturable absorber,” Photon. Res. 3(3), 94–99 (2015).
[Crossref]

D. Mao, S. Zhang, Y. Wang, X. Gan, W. Zhang, T. Mei, Y. Wang, Y. Wang, H. Zeng, and J. Zhao, “WS2 saturable absorber for dissipative soliton mode locking at 1.06 and 1.55 microm,” Opt. Express 23(21), 27509–27519 (2015).
[Crossref] [PubMed]

2014 (2)

S. Tongay, H. Sahin, C. Ko, A. Luce, W. Fan, K. Liu, J. Zhou, Y. S. Huang, C. H. Ho, J. Yan, D. F. Ogletree, S. Aloni, J. Ji, S. Li, J. Li, F. M. Peeters, and J. Wu, “Monolayer behaviour in bulk ReS2 due to electronic and vibrational decoupling,” Nat. Commun. 5, 3252 (2014).
[Crossref] [PubMed]

S. Wang, H. Yu, H. Zhang, A. Wang, M. Zhao, Y. Chen, L. Mei, and J. Wang, “Broadband few-layer MoS2 saturable absorbers,” Adv. Mater. 26(21), 3538–3544 (2014).
[Crossref] [PubMed]

2012 (3)

Q. Y. Ning, S. K. Wang, A. P. Luo, Z. B. Lin, Z. C. Luo, and W. C. Xu, “Bright-Dark Pulse Pair in a Figure-Eight Dispersion-Managed Passively Mode-Locked Fiber Laser,” IEEE Photonics J. 4(5), 1647–1652 (2012).
[Crossref]

Y. Meng, S. Zhang, H. Li, J. Du, Y. Hao, and X. Li, “Bright-dark soliton pairs in a self-mode locking fiber laser,” Opt. Eng. 51(6), 064302 (2012).
[Crossref]

D. Mao and H. Lu, “Formation and evolution of passively mode-locked fiber soliton lasers operating in a dual-wavelength regime,” J. Opt. Soc. Am. B 29(10), 2819–2826 (2012).
[Crossref]

2011 (1)

H. Y. Wang, W. C. Xu, W. J. Cao, L. Y. Wang, and J. L. Dong, “Experimental observation of bright-dark pulse emitting in an all-fiber ring cavity laser,” Laser Phys. 22(1), 282–285 (2011).
[Crossref]

1996 (1)

H. A. Haus and W. S. Wong, “Solitons in optical communications,” Rev. Mod. Phys. 68(2), 423–444 (1996).
[Crossref]

1990 (2)

M. Lisak, A. Höök, and D. Anderson, “Symbiotic solitary-wave pairs sustained by cross-phase modulation in optical fibers,” J. Opt. Soc. Am. B 7(5), 810–814 (1990).
[Crossref]

M. Sheik-Bahae, A. A. Said, T. H. Wei, D. J. Hagan, and E. W. V. Stryland, “Sensitive measurement of optical nonlinearities using a single beam,” IEEE J. Quantum Electron. 26(4), 760–769 (1990).
[Crossref]

1989 (2)

V. V. Afanasyev, Y. S. Kivshar, V. V. Konotop, and V. N. Serkin, “Dynamics of coupled dark and bright optical solitons,” Opt. Lett. 14(15), 805–807 (1989).
[Crossref] [PubMed]

V. V. Afanasjev, E. M. Dianov, and V. N. Serkin, “Nonlinear pairing of short bright and dark soliton pulses by phase cross modulation,” IEEE J. Quantum Electron. 25(12), 2656–2664 (1989).
[Crossref]

Afanasjev, V. V.

V. V. Afanasjev, E. M. Dianov, and V. N. Serkin, “Nonlinear pairing of short bright and dark soliton pulses by phase cross modulation,” IEEE J. Quantum Electron. 25(12), 2656–2664 (1989).
[Crossref]

Afanasyev, V. V.

Ahmad, H.

Aloni, S.

S. Tongay, H. Sahin, C. Ko, A. Luce, W. Fan, K. Liu, J. Zhou, Y. S. Huang, C. H. Ho, J. Yan, D. F. Ogletree, S. Aloni, J. Ji, S. Li, J. Li, F. M. Peeters, and J. Wu, “Monolayer behaviour in bulk ReS2 due to electronic and vibrational decoupling,” Nat. Commun. 5, 3252 (2014).
[Crossref] [PubMed]

Anderson, D.

Cao, W. J.

H. Y. Wang, W. C. Xu, W. J. Cao, L. Y. Wang, and J. L. Dong, “Experimental observation of bright-dark pulse emitting in an all-fiber ring cavity laser,” Laser Phys. 22(1), 282–285 (2011).
[Crossref]

Cao, Z.

E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
[Crossref] [PubMed]

Chen, Y.

S. Wang, H. Yu, H. Zhang, A. Wang, M. Zhao, Y. Chen, L. Mei, and J. Wang, “Broadband few-layer MoS2 saturable absorbers,” Adv. Mater. 26(21), 3538–3544 (2014).
[Crossref] [PubMed]

Chin, M. L.

H. Tian, M. L. Chin, S. Najmaei, Q. Guo, F. Xia, H. Wang, and M. Dubey, “Optoelectronic devices based on two-dimensional transition metal dichalcogenides,” Nano Res. 9(6), 1543–1560 (2016).
[Crossref]

Cui, X.

D. Mao, X. Cui, X. Gan, M. Li, W. Zhang, H. Lu, and J. Zhao, “Passively Q-switched and mode-locked fiber laser based on a ReS2 saturable absorber,” IEEE J. Sel. Top. Quantum Electron. 24, 1100406 (2017).

Cui, Y.

Y. Cui, F. Lu, and X. Liu, “Nonlinear Saturable and Polarization-induced Absorption of Rhenium Disulfide,” Sci. Rep. 7, 40080 (2017).
[Crossref] [PubMed]

E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
[Crossref] [PubMed]

Dianov, E. M.

V. V. Afanasjev, E. M. Dianov, and V. N. Serkin, “Nonlinear pairing of short bright and dark soliton pulses by phase cross modulation,” IEEE J. Quantum Electron. 25(12), 2656–2664 (1989).
[Crossref]

Dong, J. L.

H. Y. Wang, W. C. Xu, W. J. Cao, L. Y. Wang, and J. L. Dong, “Experimental observation of bright-dark pulse emitting in an all-fiber ring cavity laser,” Laser Phys. 22(1), 282–285 (2011).
[Crossref]

Du, J.

Y. Meng, S. Zhang, H. Li, J. Du, Y. Hao, and X. Li, “Bright-dark soliton pairs in a self-mode locking fiber laser,” Opt. Eng. 51(6), 064302 (2012).
[Crossref]

Dubey, M.

H. Tian, M. L. Chin, S. Najmaei, Q. Guo, F. Xia, H. Wang, and M. Dubey, “Optoelectronic devices based on two-dimensional transition metal dichalcogenides,” Nano Res. 9(6), 1543–1560 (2016).
[Crossref]

Fan, W.

S. Tongay, H. Sahin, C. Ko, A. Luce, W. Fan, K. Liu, J. Zhou, Y. S. Huang, C. H. Ho, J. Yan, D. F. Ogletree, S. Aloni, J. Ji, S. Li, J. Li, F. M. Peeters, and J. Wu, “Monolayer behaviour in bulk ReS2 due to electronic and vibrational decoupling,” Nat. Commun. 5, 3252 (2014).
[Crossref] [PubMed]

Feng, Y.

Y. Feng, W. Zhou, Y. Wang, J. Zhou, E. Liu, Y. Fu, Z. Ni, X. Wu, H. Yuan, F. Miao, B. Wang, X. Wan, and D. Xing, “Raman vibrational spectra of bulk to monolayer ReS2 with lower symmetry,” Phys. Rev. B 92(5), 054110 (2015).
[Crossref]

E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
[Crossref] [PubMed]

Fu, Y.

E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
[Crossref] [PubMed]

Y. Feng, W. Zhou, Y. Wang, J. Zhou, E. Liu, Y. Fu, Z. Ni, X. Wu, H. Yuan, F. Miao, B. Wang, X. Wan, and D. Xing, “Raman vibrational spectra of bulk to monolayer ReS2 with lower symmetry,” Phys. Rev. B 92(5), 054110 (2015).
[Crossref]

Gan, X.

D. Mao, X. Cui, X. Gan, M. Li, W. Zhang, H. Lu, and J. Zhao, “Passively Q-switched and mode-locked fiber laser based on a ReS2 saturable absorber,” IEEE J. Sel. Top. Quantum Electron. 24, 1100406 (2017).

D. Mao, S. Zhang, Y. Wang, X. Gan, W. Zhang, T. Mei, Y. Wang, Y. Wang, H. Zeng, and J. Zhao, “WS2 saturable absorber for dissipative soliton mode locking at 1.06 and 1.55 microm,” Opt. Express 23(21), 27509–27519 (2015).
[Crossref] [PubMed]

Guo, B.

B. Guo, Y. Yao, P.-G. Yan, K. Xu, J.-J. Liu, S.-G. Wang, and Y. Li, “Dual-Wavelength Soliton Mode-Locked Fiber Laser With a WS2-Based Fiber Taper,” IEEE Photonics Technol. Lett. 28(3), 323–326 (2016).
[Crossref]

B. Guo, Y. Yao, Y.-F. Yang, Y.-J. Yuan, L. Jin, B. Yan, and J.-Y. Zhang, “Dual-wavelength rectangular pulse erbium-doped fiber laser based on topological insulator saturable absorber,” Photon. Res. 3(3), 94–99 (2015).
[Crossref]

B. Guo, Y. Yao, J. J. Tian, Y. F. Zhao, S. Liu, M. Li, and M. R. Quan, “Observation of Bright-Dark Soliton Pair in a Fiber Laser with Topological Insulator,” IEEE Photonics Technol. Lett. 27(7), 701–704 (2015).
[Crossref]

Guo, Q.

H. Tian, M. L. Chin, S. Najmaei, Q. Guo, F. Xia, H. Wang, and M. Dubey, “Optoelectronic devices based on two-dimensional transition metal dichalcogenides,” Nano Res. 9(6), 1543–1560 (2016).
[Crossref]

Hagan, D. J.

M. Sheik-Bahae, A. A. Said, T. H. Wei, D. J. Hagan, and E. W. V. Stryland, “Sensitive measurement of optical nonlinearities using a single beam,” IEEE J. Quantum Electron. 26(4), 760–769 (1990).
[Crossref]

Hao, Y.

Y. Meng, S. Zhang, H. Li, J. Du, Y. Hao, and X. Li, “Bright-dark soliton pairs in a self-mode locking fiber laser,” Opt. Eng. 51(6), 064302 (2012).
[Crossref]

Harun, S. W.

Haus, H. A.

H. A. Haus and W. S. Wong, “Solitons in optical communications,” Rev. Mod. Phys. 68(2), 423–444 (1996).
[Crossref]

He, J.

X. Su, H. Nie, Y. Wang, G. Li, B. Yan, B. Zhang, K. Yang, and J. He, “Few-layered ReS2as saturable absorber for 2.8 μm solid state laser,” Opt. Lett. 42(17), 3502–3505 (2017).
[Crossref] [PubMed]

R. Zhao, J. Li, B. Zhang, X. Li, X. Su, Y. Wang, F. Lou, H. Zhang, and J. He, “Triwavelength synchronously mode-locked fiber laser based on few-layered black phosphorus,” Appl. Phys. Express 9(9), 092701 (2016).
[Crossref]

Ho, C. H.

S. Tongay, H. Sahin, C. Ko, A. Luce, W. Fan, K. Liu, J. Zhou, Y. S. Huang, C. H. Ho, J. Yan, D. F. Ogletree, S. Aloni, J. Ji, S. Li, J. Li, F. M. Peeters, and J. Wu, “Monolayer behaviour in bulk ReS2 due to electronic and vibrational decoupling,” Nat. Commun. 5, 3252 (2014).
[Crossref] [PubMed]

Ho, C.-H.

E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
[Crossref] [PubMed]

Höök, A.

Huang, Y. S.

S. Tongay, H. Sahin, C. Ko, A. Luce, W. Fan, K. Liu, J. Zhou, Y. S. Huang, C. H. Ho, J. Yan, D. F. Ogletree, S. Aloni, J. Ji, S. Li, J. Li, F. M. Peeters, and J. Wu, “Monolayer behaviour in bulk ReS2 due to electronic and vibrational decoupling,” Nat. Commun. 5, 3252 (2014).
[Crossref] [PubMed]

Huang, Y.-S.

E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
[Crossref] [PubMed]

Hwang, H. Y.

E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
[Crossref] [PubMed]

Ji, J.

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Li, A.

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Li, H.

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D. Mao, X. Cui, X. Gan, M. Li, W. Zhang, H. Lu, and J. Zhao, “Passively Q-switched and mode-locked fiber laser based on a ReS2 saturable absorber,” IEEE J. Sel. Top. Quantum Electron. 24, 1100406 (2017).

B. Guo, Y. Yao, J. J. Tian, Y. F. Zhao, S. Liu, M. Li, and M. R. Quan, “Observation of Bright-Dark Soliton Pair in a Fiber Laser with Topological Insulator,” IEEE Photonics Technol. Lett. 27(7), 701–704 (2015).
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S. Tongay, H. Sahin, C. Ko, A. Luce, W. Fan, K. Liu, J. Zhou, Y. S. Huang, C. H. Ho, J. Yan, D. F. Ogletree, S. Aloni, J. Ji, S. Li, J. Li, F. M. Peeters, and J. Wu, “Monolayer behaviour in bulk ReS2 due to electronic and vibrational decoupling,” Nat. Commun. 5, 3252 (2014).
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B. Guo, Y. Yao, P.-G. Yan, K. Xu, J.-J. Liu, S.-G. Wang, and Y. Li, “Dual-Wavelength Soliton Mode-Locked Fiber Laser With a WS2-Based Fiber Taper,” IEEE Photonics Technol. Lett. 28(3), 323–326 (2016).
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B. Guo, Y. Yao, P.-G. Yan, K. Xu, J.-J. Liu, S.-G. Wang, and Y. Li, “Dual-Wavelength Soliton Mode-Locked Fiber Laser With a WS2-Based Fiber Taper,” IEEE Photonics Technol. Lett. 28(3), 323–326 (2016).
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S. Tongay, H. Sahin, C. Ko, A. Luce, W. Fan, K. Liu, J. Zhou, Y. S. Huang, C. H. Ho, J. Yan, D. F. Ogletree, S. Aloni, J. Ji, S. Li, J. Li, F. M. Peeters, and J. Wu, “Monolayer behaviour in bulk ReS2 due to electronic and vibrational decoupling,” Nat. Commun. 5, 3252 (2014).
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B. Guo, Y. Yao, J. J. Tian, Y. F. Zhao, S. Liu, M. Li, and M. R. Quan, “Observation of Bright-Dark Soliton Pair in a Fiber Laser with Topological Insulator,” IEEE Photonics Technol. Lett. 27(7), 701–704 (2015).
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F. Lu, “Passively harmonic mode-locked fiber laser based on ReS2 saturable absorber,” Mod. Phys. Lett. B 31(18), 1750206 (2017).
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Y. Cui, F. Lu, and X. Liu, “Nonlinear Saturable and Polarization-induced Absorption of Rhenium Disulfide,” Sci. Rep. 7, 40080 (2017).
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D. Mao, X. Cui, X. Gan, M. Li, W. Zhang, H. Lu, and J. Zhao, “Passively Q-switched and mode-locked fiber laser based on a ReS2 saturable absorber,” IEEE J. Sel. Top. Quantum Electron. 24, 1100406 (2017).

D. Mao and H. Lu, “Formation and evolution of passively mode-locked fiber soliton lasers operating in a dual-wavelength regime,” J. Opt. Soc. Am. B 29(10), 2819–2826 (2012).
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Q. Y. Ning, S. K. Wang, A. P. Luo, Z. B. Lin, Z. C. Luo, and W. C. Xu, “Bright-Dark Pulse Pair in a Figure-Eight Dispersion-Managed Passively Mode-Locked Fiber Laser,” IEEE Photonics J. 4(5), 1647–1652 (2012).
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Q. Y. Ning, S. K. Wang, A. P. Luo, Z. B. Lin, Z. C. Luo, and W. C. Xu, “Bright-Dark Pulse Pair in a Figure-Eight Dispersion-Managed Passively Mode-Locked Fiber Laser,” IEEE Photonics J. 4(5), 1647–1652 (2012).
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Mei, L.

S. Wang, H. Yu, H. Zhang, A. Wang, M. Zhao, Y. Chen, L. Mei, and J. Wang, “Broadband few-layer MoS2 saturable absorbers,” Adv. Mater. 26(21), 3538–3544 (2014).
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Meng, Y.

Y. Meng, S. Zhang, H. Li, J. Du, Y. Hao, and X. Li, “Bright-dark soliton pairs in a self-mode locking fiber laser,” Opt. Eng. 51(6), 064302 (2012).
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E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
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S. Tongay, H. Sahin, C. Ko, A. Luce, W. Fan, K. Liu, J. Zhou, Y. S. Huang, C. H. Ho, J. Yan, D. F. Ogletree, S. Aloni, J. Ji, S. Li, J. Li, F. M. Peeters, and J. Wu, “Monolayer behaviour in bulk ReS2 due to electronic and vibrational decoupling,” Nat. Commun. 5, 3252 (2014).
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H. Tian, M. L. Chin, S. Najmaei, Q. Guo, F. Xia, H. Wang, and M. Dubey, “Optoelectronic devices based on two-dimensional transition metal dichalcogenides,” Nano Res. 9(6), 1543–1560 (2016).
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B. Guo, Y. Yao, J. J. Tian, Y. F. Zhao, S. Liu, M. Li, and M. R. Quan, “Observation of Bright-Dark Soliton Pair in a Fiber Laser with Topological Insulator,” IEEE Photonics Technol. Lett. 27(7), 701–704 (2015).
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H. Tian, M. L. Chin, S. Najmaei, Q. Guo, F. Xia, H. Wang, and M. Dubey, “Optoelectronic devices based on two-dimensional transition metal dichalcogenides,” Nano Res. 9(6), 1543–1560 (2016).
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Q. Y. Ning, S. K. Wang, A. P. Luo, Z. B. Lin, Z. C. Luo, and W. C. Xu, “Bright-Dark Pulse Pair in a Figure-Eight Dispersion-Managed Passively Mode-Locked Fiber Laser,” IEEE Photonics J. 4(5), 1647–1652 (2012).
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B. Guo, Y. Yao, P.-G. Yan, K. Xu, J.-J. Liu, S.-G. Wang, and Y. Li, “Dual-Wavelength Soliton Mode-Locked Fiber Laser With a WS2-Based Fiber Taper,” IEEE Photonics Technol. Lett. 28(3), 323–326 (2016).
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X. Su, H. Nie, Y. Wang, G. Li, B. Yan, B. Zhang, K. Yang, and J. He, “Few-layered ReS2as saturable absorber for 2.8 μm solid state laser,” Opt. Lett. 42(17), 3502–3505 (2017).
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Y. Feng, W. Zhou, Y. Wang, J. Zhou, E. Liu, Y. Fu, Z. Ni, X. Wu, H. Yuan, F. Miao, B. Wang, X. Wan, and D. Xing, “Raman vibrational spectra of bulk to monolayer ReS2 with lower symmetry,” Phys. Rev. B 92(5), 054110 (2015).
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D. Mao, S. Zhang, Y. Wang, X. Gan, W. Zhang, T. Mei, Y. Wang, Y. Wang, H. Zeng, and J. Zhao, “WS2 saturable absorber for dissipative soliton mode locking at 1.06 and 1.55 microm,” Opt. Express 23(21), 27509–27519 (2015).
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D. Mao, S. Zhang, Y. Wang, X. Gan, W. Zhang, T. Mei, Y. Wang, Y. Wang, H. Zeng, and J. Zhao, “WS2 saturable absorber for dissipative soliton mode locking at 1.06 and 1.55 microm,” Opt. Express 23(21), 27509–27519 (2015).
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D. Mao, S. Zhang, Y. Wang, X. Gan, W. Zhang, T. Mei, Y. Wang, Y. Wang, H. Zeng, and J. Zhao, “WS2 saturable absorber for dissipative soliton mode locking at 1.06 and 1.55 microm,” Opt. Express 23(21), 27509–27519 (2015).
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M. Sheik-Bahae, A. A. Said, T. H. Wei, D. J. Hagan, and E. W. V. Stryland, “Sensitive measurement of optical nonlinearities using a single beam,” IEEE J. Quantum Electron. 26(4), 760–769 (1990).
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Y. Feng, W. Zhou, Y. Wang, J. Zhou, E. Liu, Y. Fu, Z. Ni, X. Wu, H. Yuan, F. Miao, B. Wang, X. Wan, and D. Xing, “Raman vibrational spectra of bulk to monolayer ReS2 with lower symmetry,” Phys. Rev. B 92(5), 054110 (2015).
[Crossref]

Xia, F.

H. Tian, M. L. Chin, S. Najmaei, Q. Guo, F. Xia, H. Wang, and M. Dubey, “Optoelectronic devices based on two-dimensional transition metal dichalcogenides,” Nano Res. 9(6), 1543–1560 (2016).
[Crossref]

Xing, D.

E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
[Crossref] [PubMed]

Y. Feng, W. Zhou, Y. Wang, J. Zhou, E. Liu, Y. Fu, Z. Ni, X. Wu, H. Yuan, F. Miao, B. Wang, X. Wan, and D. Xing, “Raman vibrational spectra of bulk to monolayer ReS2 with lower symmetry,” Phys. Rev. B 92(5), 054110 (2015).
[Crossref]

Xu, K.

B. Guo, Y. Yao, P.-G. Yan, K. Xu, J.-J. Liu, S.-G. Wang, and Y. Li, “Dual-Wavelength Soliton Mode-Locked Fiber Laser With a WS2-Based Fiber Taper,” IEEE Photonics Technol. Lett. 28(3), 323–326 (2016).
[Crossref]

Xu, W. C.

Q. Y. Ning, S. K. Wang, A. P. Luo, Z. B. Lin, Z. C. Luo, and W. C. Xu, “Bright-Dark Pulse Pair in a Figure-Eight Dispersion-Managed Passively Mode-Locked Fiber Laser,” IEEE Photonics J. 4(5), 1647–1652 (2012).
[Crossref]

H. Y. Wang, W. C. Xu, W. J. Cao, L. Y. Wang, and J. L. Dong, “Experimental observation of bright-dark pulse emitting in an all-fiber ring cavity laser,” Laser Phys. 22(1), 282–285 (2011).
[Crossref]

Yan, B.

Yan, J.

S. Tongay, H. Sahin, C. Ko, A. Luce, W. Fan, K. Liu, J. Zhou, Y. S. Huang, C. H. Ho, J. Yan, D. F. Ogletree, S. Aloni, J. Ji, S. Li, J. Li, F. M. Peeters, and J. Wu, “Monolayer behaviour in bulk ReS2 due to electronic and vibrational decoupling,” Nat. Commun. 5, 3252 (2014).
[Crossref] [PubMed]

Yan, P.-G.

B. Guo, Y. Yao, P.-G. Yan, K. Xu, J.-J. Liu, S.-G. Wang, and Y. Li, “Dual-Wavelength Soliton Mode-Locked Fiber Laser With a WS2-Based Fiber Taper,” IEEE Photonics Technol. Lett. 28(3), 323–326 (2016).
[Crossref]

Yang, K.

Yang, Y.-F.

Yao, Y.

B. Guo, Y. Yao, P.-G. Yan, K. Xu, J.-J. Liu, S.-G. Wang, and Y. Li, “Dual-Wavelength Soliton Mode-Locked Fiber Laser With a WS2-Based Fiber Taper,” IEEE Photonics Technol. Lett. 28(3), 323–326 (2016).
[Crossref]

B. Guo, Y. Yao, Y.-F. Yang, Y.-J. Yuan, L. Jin, B. Yan, and J.-Y. Zhang, “Dual-wavelength rectangular pulse erbium-doped fiber laser based on topological insulator saturable absorber,” Photon. Res. 3(3), 94–99 (2015).
[Crossref]

B. Guo, Y. Yao, J. J. Tian, Y. F. Zhao, S. Liu, M. Li, and M. R. Quan, “Observation of Bright-Dark Soliton Pair in a Fiber Laser with Topological Insulator,” IEEE Photonics Technol. Lett. 27(7), 701–704 (2015).
[Crossref]

Yu, H.

S. Wang, H. Yu, H. Zhang, A. Wang, M. Zhao, Y. Chen, L. Mei, and J. Wang, “Broadband few-layer MoS2 saturable absorbers,” Adv. Mater. 26(21), 3538–3544 (2014).
[Crossref] [PubMed]

Yuan, H.

Y. Feng, W. Zhou, Y. Wang, J. Zhou, E. Liu, Y. Fu, Z. Ni, X. Wu, H. Yuan, F. Miao, B. Wang, X. Wan, and D. Xing, “Raman vibrational spectra of bulk to monolayer ReS2 with lower symmetry,” Phys. Rev. B 92(5), 054110 (2015).
[Crossref]

E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
[Crossref] [PubMed]

Yuan, Y.-J.

Zarei, A.

Zeng, H.

Zeng, J.

E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
[Crossref] [PubMed]

Zhang, B.

X. Su, H. Nie, Y. Wang, G. Li, B. Yan, B. Zhang, K. Yang, and J. He, “Few-layered ReS2as saturable absorber for 2.8 μm solid state laser,” Opt. Lett. 42(17), 3502–3505 (2017).
[Crossref] [PubMed]

R. Zhao, J. Li, B. Zhang, X. Li, X. Su, Y. Wang, F. Lou, H. Zhang, and J. He, “Triwavelength synchronously mode-locked fiber laser based on few-layered black phosphorus,” Appl. Phys. Express 9(9), 092701 (2016).
[Crossref]

Zhang, H.

R. Zhao, J. Li, B. Zhang, X. Li, X. Su, Y. Wang, F. Lou, H. Zhang, and J. He, “Triwavelength synchronously mode-locked fiber laser based on few-layered black phosphorus,” Appl. Phys. Express 9(9), 092701 (2016).
[Crossref]

S. Wang, H. Yu, H. Zhang, A. Wang, M. Zhao, Y. Chen, L. Mei, and J. Wang, “Broadband few-layer MoS2 saturable absorbers,” Adv. Mater. 26(21), 3538–3544 (2014).
[Crossref] [PubMed]

Zhang, J.-Y.

Zhang, S.

Zhang, W.

D. Mao, X. Cui, X. Gan, M. Li, W. Zhang, H. Lu, and J. Zhao, “Passively Q-switched and mode-locked fiber laser based on a ReS2 saturable absorber,” IEEE J. Sel. Top. Quantum Electron. 24, 1100406 (2017).

D. Mao, S. Zhang, Y. Wang, X. Gan, W. Zhang, T. Mei, Y. Wang, Y. Wang, H. Zeng, and J. Zhao, “WS2 saturable absorber for dissipative soliton mode locking at 1.06 and 1.55 microm,” Opt. Express 23(21), 27509–27519 (2015).
[Crossref] [PubMed]

Zhao, J.

D. Mao, X. Cui, X. Gan, M. Li, W. Zhang, H. Lu, and J. Zhao, “Passively Q-switched and mode-locked fiber laser based on a ReS2 saturable absorber,” IEEE J. Sel. Top. Quantum Electron. 24, 1100406 (2017).

D. Mao, S. Zhang, Y. Wang, X. Gan, W. Zhang, T. Mei, Y. Wang, Y. Wang, H. Zeng, and J. Zhao, “WS2 saturable absorber for dissipative soliton mode locking at 1.06 and 1.55 microm,” Opt. Express 23(21), 27509–27519 (2015).
[Crossref] [PubMed]

Zhao, M.

S. Wang, H. Yu, H. Zhang, A. Wang, M. Zhao, Y. Chen, L. Mei, and J. Wang, “Broadband few-layer MoS2 saturable absorbers,” Adv. Mater. 26(21), 3538–3544 (2014).
[Crossref] [PubMed]

Zhao, R.

R. Zhao, J. Li, B. Zhang, X. Li, X. Su, Y. Wang, F. Lou, H. Zhang, and J. He, “Triwavelength synchronously mode-locked fiber laser based on few-layered black phosphorus,” Appl. Phys. Express 9(9), 092701 (2016).
[Crossref]

Zhao, Y. F.

B. Guo, Y. Yao, J. J. Tian, Y. F. Zhao, S. Liu, M. Li, and M. R. Quan, “Observation of Bright-Dark Soliton Pair in a Fiber Laser with Topological Insulator,” IEEE Photonics Technol. Lett. 27(7), 701–704 (2015).
[Crossref]

Zhou, J.

Y. Feng, W. Zhou, Y. Wang, J. Zhou, E. Liu, Y. Fu, Z. Ni, X. Wu, H. Yuan, F. Miao, B. Wang, X. Wan, and D. Xing, “Raman vibrational spectra of bulk to monolayer ReS2 with lower symmetry,” Phys. Rev. B 92(5), 054110 (2015).
[Crossref]

S. Tongay, H. Sahin, C. Ko, A. Luce, W. Fan, K. Liu, J. Zhou, Y. S. Huang, C. H. Ho, J. Yan, D. F. Ogletree, S. Aloni, J. Ji, S. Li, J. Li, F. M. Peeters, and J. Wu, “Monolayer behaviour in bulk ReS2 due to electronic and vibrational decoupling,” Nat. Commun. 5, 3252 (2014).
[Crossref] [PubMed]

Zhou, W.

Y. Feng, W. Zhou, Y. Wang, J. Zhou, E. Liu, Y. Fu, Z. Ni, X. Wu, H. Yuan, F. Miao, B. Wang, X. Wan, and D. Xing, “Raman vibrational spectra of bulk to monolayer ReS2 with lower symmetry,” Phys. Rev. B 92(5), 054110 (2015).
[Crossref]

E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
[Crossref] [PubMed]

Adv. Mater. (1)

S. Wang, H. Yu, H. Zhang, A. Wang, M. Zhao, Y. Chen, L. Mei, and J. Wang, “Broadband few-layer MoS2 saturable absorbers,” Adv. Mater. 26(21), 3538–3544 (2014).
[Crossref] [PubMed]

Appl. Phys. Express (1)

R. Zhao, J. Li, B. Zhang, X. Li, X. Su, Y. Wang, F. Lou, H. Zhang, and J. He, “Triwavelength synchronously mode-locked fiber laser based on few-layered black phosphorus,” Appl. Phys. Express 9(9), 092701 (2016).
[Crossref]

Chin. Opt. Lett. (1)

IEEE J. Quantum Electron. (2)

V. V. Afanasjev, E. M. Dianov, and V. N. Serkin, “Nonlinear pairing of short bright and dark soliton pulses by phase cross modulation,” IEEE J. Quantum Electron. 25(12), 2656–2664 (1989).
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M. Sheik-Bahae, A. A. Said, T. H. Wei, D. J. Hagan, and E. W. V. Stryland, “Sensitive measurement of optical nonlinearities using a single beam,” IEEE J. Quantum Electron. 26(4), 760–769 (1990).
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IEEE J. Sel. Top. Quantum Electron. (1)

D. Mao, X. Cui, X. Gan, M. Li, W. Zhang, H. Lu, and J. Zhao, “Passively Q-switched and mode-locked fiber laser based on a ReS2 saturable absorber,” IEEE J. Sel. Top. Quantum Electron. 24, 1100406 (2017).

IEEE Photonics J. (1)

Q. Y. Ning, S. K. Wang, A. P. Luo, Z. B. Lin, Z. C. Luo, and W. C. Xu, “Bright-Dark Pulse Pair in a Figure-Eight Dispersion-Managed Passively Mode-Locked Fiber Laser,” IEEE Photonics J. 4(5), 1647–1652 (2012).
[Crossref]

IEEE Photonics Technol. Lett. (2)

B. Guo, Y. Yao, J. J. Tian, Y. F. Zhao, S. Liu, M. Li, and M. R. Quan, “Observation of Bright-Dark Soliton Pair in a Fiber Laser with Topological Insulator,” IEEE Photonics Technol. Lett. 27(7), 701–704 (2015).
[Crossref]

B. Guo, Y. Yao, P.-G. Yan, K. Xu, J.-J. Liu, S.-G. Wang, and Y. Li, “Dual-Wavelength Soliton Mode-Locked Fiber Laser With a WS2-Based Fiber Taper,” IEEE Photonics Technol. Lett. 28(3), 323–326 (2016).
[Crossref]

J. Opt. Soc. Am. B (2)

Laser Phys. (1)

H. Y. Wang, W. C. Xu, W. J. Cao, L. Y. Wang, and J. L. Dong, “Experimental observation of bright-dark pulse emitting in an all-fiber ring cavity laser,” Laser Phys. 22(1), 282–285 (2011).
[Crossref]

Mod. Phys. Lett. B (1)

F. Lu, “Passively harmonic mode-locked fiber laser based on ReS2 saturable absorber,” Mod. Phys. Lett. B 31(18), 1750206 (2017).
[Crossref]

Nano Res. (1)

H. Tian, M. L. Chin, S. Najmaei, Q. Guo, F. Xia, H. Wang, and M. Dubey, “Optoelectronic devices based on two-dimensional transition metal dichalcogenides,” Nano Res. 9(6), 1543–1560 (2016).
[Crossref]

Nat. Commun. (2)

E. Liu, Y. Fu, Y. Wang, Y. Feng, H. Liu, X. Wan, W. Zhou, B. Wang, L. Shao, C.-H. Ho, Y.-S. Huang, Z. Cao, L. Wang, A. Li, J. Zeng, F. Song, X. Wang, Y. Shi, H. Yuan, H. Y. Hwang, Y. Cui, F. Miao, and D. Xing, “Integrated digital inverters based on two-dimensional anisotropic ReS2 field-effect transistors,” Nat. Commun. 6(1), 6991 (2015).
[Crossref] [PubMed]

S. Tongay, H. Sahin, C. Ko, A. Luce, W. Fan, K. Liu, J. Zhou, Y. S. Huang, C. H. Ho, J. Yan, D. F. Ogletree, S. Aloni, J. Ji, S. Li, J. Li, F. M. Peeters, and J. Wu, “Monolayer behaviour in bulk ReS2 due to electronic and vibrational decoupling,” Nat. Commun. 5, 3252 (2014).
[Crossref] [PubMed]

Opt. Eng. (1)

Y. Meng, S. Zhang, H. Li, J. Du, Y. Hao, and X. Li, “Bright-dark soliton pairs in a self-mode locking fiber laser,” Opt. Eng. 51(6), 064302 (2012).
[Crossref]

Opt. Express (1)

Opt. Lett. (2)

Photon. Res. (1)

Phys. Rev. B (1)

Y. Feng, W. Zhou, Y. Wang, J. Zhou, E. Liu, Y. Fu, Z. Ni, X. Wu, H. Yuan, F. Miao, B. Wang, X. Wan, and D. Xing, “Raman vibrational spectra of bulk to monolayer ReS2 with lower symmetry,” Phys. Rev. B 92(5), 054110 (2015).
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Y. Cui, F. Lu, and X. Liu, “Nonlinear Saturable and Polarization-induced Absorption of Rhenium Disulfide,” Sci. Rep. 7, 40080 (2017).
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Other (1)

G. P. Agrawal, Nonlinear Fiber Optics (Academic, 2007).

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Figures (6)

Fig. 1
Fig. 1 (a) Raman spectrum of ReS2-sample. (b) AFM image of ReS2-sample. (c) Linear transmittance of ReS2-sample in comparison with bare sapphire. (d) The corresponding height profiles of ReS2-sample.
Fig. 2
Fig. 2 (a) Schematic diagram of I-scanning measurement. (b) Corresponding nonlinear saturable absorption of ReS2. The inset is the open-aperture data of I-scan.
Fig. 3
Fig. 3 The experimental setup of mode-locked fiber laser.
Fig. 4
Fig. 4 Laser performance of the bright-dark pulse pair at the pump power of 270 mW. (a) Output power versus the pump power, with ReS2 (yellow square) and without ReS2 (blue dot). (b) Typical pulse train. The inset shows the corresponding single pulse profile. (c) The output optical spectrum. (d) The corresponding RF spectrum with a span of 3 MHz. Upper inset: fine structure of RF spectrum with a span of 7 kHz.
Fig. 5
Fig. 5 Separation of the bright-dark soliton pair. (a) The bright pulse and the dark pulse. (c) Corresponding output spectrum of the bright pulse and the dark pulse.
Fig. 6
Fig. 6 Long-term stability of the multi-wavelength bright-dark soliton pair fiber laser over 2 hours.

Equations (1)

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Δf= c 2 Ddλ n 2 ( L+LDdλc/n )

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