J. Mater. Sci. Technol. ›› 2024, Vol. 171: 10-15.DOI: 10.1016/j.jmst.2023.06.036
• Research Article • Previous Articles Next Articles
Yuanhongliu Gao, Xiaoyu Chen, Tonglei Cheng, Fang Wang, Xin Yan*
Received:
2023-05-04
Revised:
2023-05-04
Accepted:
2023-05-04
Published:
2024-02-01
Online:
2023-08-03
Contact:
*E-mail address: .yanxin@ise.neu.edu.cn (X. Yan)
Yuanhongliu Gao, Xiaoyu Chen, Tonglei Cheng, Fang Wang, Xin Yan. Cascaded four-wave mixing all-optical wavelength converter based on highly nonlinear fiber deposited graphene oxide[J]. J. Mater. Sci. Technol., 2024, 171: 10-15.
[1] S.J.B.Yoo, J. Lightwave Technol. 14(1966) 955-966. [2] B. Ramamurthy, B. Mukherjee, IEEE J. Sel. Areas Commun. 16(1998) 1061-1073. [3] J.M.H.Elmirghani, H.T. Mouftah, IEEE Commun. Mag. 38(2000) 58-66. [4] J.A. Hudgings, K.Y. Lau, Conference Opt. Fiber Commun. 34(1998) 1349-1355. [5] A .E. Kelly, A .D. Ellis, D. Nesset, R. Kashyap, D.G. Moodie, Electron. Lett. 34(2002) 1955-1956. [6] Y. Wang, C. Yu, T. Luo, L. Yan, Z. Pan, A.E. Willner, J. Lightwave Technol. 23(2005) 3331-3338. [7] G.W. Lu, T. Sakamoto, T. Kawanishi, Opt. Express 22 (2014) 15-22. [8] M. Matsuura, O. Raz, F. Gomez-Agis, N. Calabretta, H.J.S.Dorren, Opt. Lett. 36(2011) 2910-2912. [9] H. Fukuda, K. Yamada, T. Shoji, M. Takahashi, T. Tsuchizawa, T. Watanabe, J.I. Takahashi, S.I. Itabashi, Opt. Express 13 (2005) 4629-4637. [10] Y. Liu, E. Tangdiongga, Z. Li, H. de Waardt, A.M.J. Koonen, G.D. Khoe, X. Shu, I. Bennion, H.J.S. Dorren, J. Lightwave Technol. 25(2007) 103-108. [11] X. Kong, Y. Zhao, Opt. Fiber Technol. 63(2021) 102480. [12] P. Wang, D. Weng, K. Li, Y. Liu, X. Yu, X. Zhou, Opt. Express 21 (2013) 12570-12578. [13] A. Zhang, M.S. Demokan, Opt. Lett. 30(2005) 2375-2377. [14] J. Ma, J. Yu, C. Yu, Z. Jia, X. Sang, Z. Zhou, G.K. Chang, J. Lightwave Technol. 24(2006) 2851-2858. [15] Y. Yang, M. Duan, J. Lin, Z. Wang, K. Wang, J. Ji, Y. Song, Opt. Express 30 (2022) 10168-10177. [16] K.K. Chow, S. Yamashita, S.Y. Set, Opt. Lett. 35(2010) 2070-2072. [17] S.Q. Chen, L.L. Miao, X. Chen, Y. Chen, C.J. Zhao, S. Datta, Y. Li, Q.L. Bao, H. Zhang, Y. Liu, S.C. Wen, D.Y. Fan, Adv. Opt. Mater. 3(2015) 1769-1778. [18] Y. Song, Y. Chen, X. Jiang, W. Liang, Z. Han, Adv. Opt. Mater. 6(2018) 1701287. [19] Y.F. Song, Y.X. Chen, X.T. Jiang, Y.Q. Ge, Y.Z. Wang, K.X. You, K. Wang, J.L. Zheng, J.H. Ji, Y.P. Zhang, J.Q. Li, H. Zhang, Adv. Opt. Mater. 7(2019) 1801777. [20] K. Wang, J.L. Zheng, H. Huang, Y.X. Chen, Y.F. Song, J.H. Ji, H. Zhang, Opt. Express 27 (2019) 16798-16811. [21] L. Du, X. Ding, D. Han, L. Sui, Z. Tao, W. Ma, T. Wang, Y. Wang, Opt. Express 29 (2021) 40286-40293. [22] S. Stankovich, D.A. Dikin, G. Dommett, R. Ruoff, Nature 442 (2006) 282-286. [23] E. Hendry, P.J. Hale, J. Moger, A.K. Savchenko, S.A. Mikhailov, Phys. Rev. Lett. 105(2010) 097401. [24] T. Gu, N. Petrone, J.F. McMillan, A. van der Zande, M. Yu, G.Q. Lo, D.L. Kwong, J. Hone, C.W. Wong, Nat. Photonics 6 (2012) 554-559. [25] H. Zhou, T. Gu, J.F.McMillan, N.Petrone, A. van der Zande, J.C. Hone, M. Yu, G. Lo, D.L. Kwong, G. Feng, S. Zhou, C.W. Wong, Appl. Phys. Lett. 105(2014) 091111. [26] G. Haider, P. Roy, C.W. Chiang, W.C. Tan, Y.R. Liou, H.T. Chang, C.T. Liang, W.H. Shih, Y.F. Chen, Adv. Funct. Mater. 26(2016) 620-628. [27] B. Xu, A. Martinez, S. Yamashita, Photonics Technol. Lett. 24(2012) 1792-1794. [28] K.J.A. Ooi, J.L. Cheng, J.E. Sipe, L.K. Ang, D.T.H. Tan, APL Photonics 1 (2016) 046101. [29] P. Joo, B.J. Kim, E.K. Jeon, J.H. Cho, B.S. Kim, Chem. Commun. 48(2012) 10978-10980. [30] M. Takahashi, N.G. Ueda, S. Yanagiya, IEEE Photonics J. 5(2013) 6602109. [31] Y. Yang, Q. Zhu, S. An, L. Sun, Y. Su, European Conference on Optical Communication, 2019 September 22. [32] K.K. Chow, Carbon Nanotubes and Graphene for Photonic Applications, in: S. Yamashita, Y. Saito, J.H. Choi (Eds.), Woodhead Publishing, Cambridge, 2013, pp. 220-238. [33] H. Zhang, S. Virally, Q. Bao, L.K. Ping, S. Massar, N. Godbout, P. Kockaert, Opt. Lett. 37(2012) 1856-1858. [34] R.T.M. Ahmad, S.H. Hong, T.Z. Shen, J.K. Song, Opt. Express 23 (2015) 4435-4440. [35] S. Diez, C. Schmidt, R. Ludwig, H.G. Weber, K. Obermann, S. Kindt, I. Koltchanov, K. Petermann, Sel. Top. Quantum Electron. 3(1997) 1131-1145. [36] Y.U. Wu, B. Yao, Y. Cheng, Y. Rao, Y. Gong, X. Zhou, B. Wu, K.S. Chiang, Photonics Technol. Lett. 26(2019) 249-252. [37] H. Ahmad, M.K.A.Zaini, A .A .Kamely, M.Z. Samion, M.F. Ismail, K.S. Lim, A.K. Zamzuri, K. Thambiratnam, Mod. Opt. 68(2021) 425-432. [38] H. Ahmad, A .A . Kamely, M.K.A . Zaini, M.Z. Samion, W.Y. Chong, A.K. Zamzuri, K.S. Lim, Opt. Laser Technol. 145(2022) 107458 . |
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