• Chinese Optics Letters
  • Vol. 10, Issue 4, 041405 (2012)
Y. K., Richard M., C. H., S. W., and H. Ahmad
DOI: 10.3788/col201210.041405 Cite this Article Set citation alerts
Y. K., Richard M., C. H., S. W., H. Ahmad. Graphene-based Q-switched pulsed fiber laser in a linear configuration[J]. Chinese Optics Letters, 2012, 10(4): 041405 Copy Citation Text show less
References

[1] F. Bonaccorso, Z. Sun, T. Hasan, and A. C. Ferrari, Nat. Photon. 4, 611 (2010).

[2] L. M. Zhao, D. Y. Yang, H. Zhang, X. Wu, Q. Bao, and K. P. Loh, Opt. Lett. 35, 3622 (2010).

[3] D. Popa, Z. Sun, F. Torrisi, T. Hassan, F. Wang, and A. C. Ferrari, Appl. Phys. Lett. 97, 203106 (2010).

[4] Q. Bao, H. Zhang, Y. Wang, Z. Yi, Y. Yan, Z. Shen, K. P. Loh, and D. Tang, Adv. Funct. Mater. 19, 3077 (2009).

[5] Z. Sun, T. Hasan, D. Popa, F. Torrisi, F. Wang, F. Bonaccorso, and A. C. Ferrari, in Proceedings of Conference on Lasers and Electro-Optics, OSA Technical Digest (CD) (2010).

[6] M.-K. Bae, W.-S. Han, S.-Y. Jang, and Y.-W. Song, in Proceedings of OECC2010 (2010).

[7] T. Hasan, Z. Sun, F. Wang, F. Bonaccorso, P. H. Tan, A. G. Rozhin, and A. C. Ferrari, Adv. Mater. 21, 3874 (2009).

[8] Z. Sun, T. Hasan, F. Torrisi, D. Popa, G. Privitera, F. Wang, F. Bonaccorso, D. M. Basko, and A. C. Ferrari, ACS Nano 4, 803 (2010).

[9] Z. Luo, M. Zhou, Z. Cai, C. Ye, J. Weng, G. Huang, and H. Xu, Photon. Technol. Lett. 99, 1 (2011).

[10] D. Popa, Z. Sun, T. Hasan, F. Torrisi, F. Wang, and A. C. Ferrari, Appl. Phys. Lett. 98, 073106 (2011).

[11] K. P. Jedrzeiewski, F. Martinez, J. D. Minelly, C. D. Hussey, and F. P. Payne, Electron. Lett. 22, 105 (1986).

CLP Journals

[1] Bo Guo. 2D noncarbon materials-based nonlinear optical devices for ultrafast photonics [Invited][J]. Chinese Optics Letters, 2018, 16(2): 020004

[2] Guiyun Li, Liyuan Gu, Jingpei Hu, Linglin Zhu, Aijun Zeng, Huijie Huang. Imaging method of single layer graphene on metal substrate based on imaging ellipsometer with large field of view[J]. Chinese Optics Letters, 2019, 17(1): 011201

Data from CrossRef

[1] S. W. Harun, M. A. Ismail, F. Ahmad, M. F. Ismail, R. M. Nor, N. R. Zulkepely, H. Ahmad. A Q-Switched Erbium-Doped Fiber Laser with a Carbon Nanotube Based Saturable Absorber. Chinese Physics Letters, 29, 114202(2012).

[2] S J Tan, S W Harun, F Ahmad, R M Nor, N R Zulkepely, H Ahmad. AQ-switched multi-wavelength Brillouin erbium fiber laser with a single-walled carbon nanotube saturable absorber. Laser Physics, 23, 055101(2013).

[3] H. Ahmad, F.D. Muhammad, M.Z. Zulkifli, S.W. Harun. Wideband tunable Q-switched fiber laser using graphene as a saturable absorber. Journal of Modern Optics, 60, 1563(2013).

[4] Baole Lu, Haowei Chen, Man Jiang, Xiaoming Chen, Zhaoyu Ren, Jintao Bai. Graphene-based passive Q-switching for a 2 μm thulium-doped fiber laser. Laser Physics, 23, 045111(2013).

[5] Z. C. Tiu, F. Ahmad, S. J. Tan, H. Ahmad, S. W. Harun. Passive Q-switched Erbium-doped fiber laser with graphene–polyethylene oxide saturable absorber in three different gain media. Indian Journal of Physics, 88, 727(2014).

[6] W Y Chong, Y K Yap, S Behameen, H Ahmad. Study of a high output coupling ratioQ-switched erbium-doped fibre laser using MoS2saturable absorber. Laser Physics, 27, 025104(2017).

[7] Duanduan Wu, Zhengqian Luo, Fengfu Xiong, Cankun Zhang, Yizhong Huang, Shanshan Chen, Weiwei Cai, Zhiping Cai, Huiying Xu. Passive Synchronization of 1.06- and 1.53- \(\mu \) m Fiber Lasers Q-switched by a Common Graphene SA. IEEE Photonics Technology Letters, 26, 1474(2014).

[8] Duanduan Wu, Fengfu Xiong, Cankun Zhang, Shanshan Chen, Huiying Xu, Zhiping Cai, Weiwei Cai, Kaijun Che, Zhengqian Luo. Large-energy, wavelength-tunable, all-fiber passively Q-switched Er:Yb-codoped double-clad fiber laser with mono-layer chemical vapor deposition graphene. Applied Optics, 53, 4089(2014).

[9] Grzegorz Sobon, Jaroslaw Sotor, Joanna Jagiello, Rafal Kozinski, Krzysztof Librant, Mariusz Zdrojek, Ludwika Lipinska, Krzysztof M. Abramski. Linearly polarized, Q-switched Er-doped fiber laser based on reduced graphene oxide saturable absorber. Applied Physics Letters, 101, 241106(2012).

[10] Haroldo T. Hattori, Abdul Khaleque, Liming Liu, Michael R. Greck. Ytterbium-doped Q-switched fiber laser based upon manganese dioxide (MnO_2) saturable absorber. Applied Optics, 55, 9226(2016).

[11] N Saidin, D I M Zen, B A Hamida, S Khan, H Ahmad, K Dimyati, S W Harun. AQ-switched thulium-doped fiber laser with a graphene thin film based saturable absorber. Laser Physics, 23, 115102(2013).

[12] Liming Liu, Haroldo T. Hattori, Evgeny G. Mironov, Abdul Khaleque. Composite chromium and graphene oxide as saturable absorber in ytterbium-doped Q-switched fiber lasers. Applied Optics, 53, 1173(2014).

[13] Chun Liu, Chenchun Ye, Zhengqian Luo, Huihui Cheng, Duanduan Wu, Yonglong Zheng, Zhen Liu, Biao Qu. High-energy passively Q-switched 2 μm Tm^3+-doped double-clad fiber laser using graphene-oxide-deposited fiber taper. Optics Express, 21, 204(2013).

[14] Z. Jusoh, N. S. Shahabuddin, N. M. Ali, H. Ahmad, S. W. Harun. Nanosecond Pulse Generation Using the Stimulated Brillouin Scattering Effect in a Photonic Crystal Fiber. Chinese Physics Letters, 30, 114204(2013).

[15] Mengmeng Han, Shumin Zhang, Xingliang Li, Huaxing Zhang, Fang Wen, Zhenjun Yang. High-energy, tunable-wavelengths, Q-switched pulse laser. Optics Communications, 326, 24(2014).

[16] Fauzan Ahmad, Dess Iskandar Md Zen, Norazlina Saidin, Sulaiman Wadi Harun, Kaharudin Dimyati, Siti Sarah Ahmad Damanhuri, Harith Ahmad. Q-switched thulium-doped fibre laser operating at 1900 nm using multi-layered graphene based saturable absorber. IET Optoelectronics, 8, 155(2014).

[17] A. R. Muhammad, M. T. Ahmad, R. Zakaria, H. R. A. Rahim, S. F. A. Z. Yusoff, K. S. Hamdan, H. H. M. Yusof, H. Arof, S. W. Harun. Q-Switching Pulse Operation in 1.5-μm Region Using Copper Nanoparticles as Saturable Absorber. Chinese Physics Letters, 34, 034205(2017).

[18] Harith Ahmad, Kavintheran Thambiratnam, Farah Diana Muhammad, Mohd Zamani Zulkifli, Ahmad Zarif Zulkifli, Mukul Chandra Paul, Sulaiman Wadi Harun. Q-Switching and Mode-Locking in Highly Doped Zr$_{2}$O$_{3}$–Al$_{2}$ O$_{3}$–Er $_{2}$O$_{3}$-Doped Fiber Lasers Using Graphene as a Saturable Absorber. IEEE Journal of Selected Topics in Quantum Electronics, 20, 9(2014).

[19] H. Ahmad, F. D. Muhammad, M. Z. Zulkifli, S. W. Harun. Graphene-Oxide-Based Saturable Absorber for All-Fiber Q-Switching With a Simple Optical Deposition Technique. IEEE Photonics Journal, 4, 2205(2012).

[20] I. M. Babar, M. B. S. Sabran, A. A. Rahman, M. Manaf, H. Ahmad, S. W. Harun. Multi-lobed double-clad Erbium-Ytterbium co-doped Q-switched fiber laser based on nonlinear polarisation rotation technique. Journal of Nonlinear Optical Physics & Materials, 24, 1550002(2015).

[21] M. B. S. Sabran, Z. Jusoh, I. M. Babar, H. Ahmad, S. W. Harun. Dual-wavelength passively Q-switched Erbium Ytterbium codoped fiber laser based on a nonlinear polarization rotation technique. Microwave and Optical Technology Letters, 57, 530(2015).

Y. K., Richard M., C. H., S. W., H. Ahmad. Graphene-based Q-switched pulsed fiber laser in a linear configuration[J]. Chinese Optics Letters, 2012, 10(4): 041405
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