All-optical continuously tunable delay with a high linear-chirp-rate fiber Bragg grating based on four-wave mixing in a highly-nonlinear photonic crystal fiber | |
Liu JG (Liu Jianguo) ; Cheng TH (Cheng Tee Hiang) ; Yeo YK (Yeo Yong Kee) ; Wang YX (Wang Yixin) ; Xue LF (Xue Lifang) ; Zhu NH (Zhu Ninghua) ; Xu ZW (Xu ZhaoWen) ; Wang DW (Wang Dawei) | |
刊名 | optics communications |
2009 | |
卷号 | 282期号:22页码:4366-4369 |
关键词 | Four-wave mixing |
ISSN号 | 0030-4018 |
通讯作者 | liu, jg, nanyang technol univ, sch elect & elect engn, singapore 639798, singapore. 电子邮箱地址: luckyjgliu@163.com |
中文摘要 | a scheme for hi-fi all-optical continuously tunable delay is proposed. the signal wavelength is converted to a desired idler wavelength and converted back after being delayed by a high linear-chirp-rate (hlcr) fiber bragg grating (fbg) based on four-wave mixing (fwm) in a highly-nonlinear photonic crystal fiber (hn-pcf). in our experiment, 400 ps (more than 8 full width of half maximum, fwhm) tunable delay is achieved for a 10 ghz clock pulse with relative pulse width broaden ratio (rpwbr) of 2.08%. the power penalty is only 0.3 db at 10(-9) ber for a 10 gb/s 2(31)-1 pseudo random bit sequence (prbs) data. (c) 2009 elsevier b.v. all rights reserved. |
学科主题 | 光电子学 |
收录类别 | SCI |
语种 | 英语 |
公开日期 | 2010-03-08 |
内容类型 | 期刊论文 |
源URL | [http://ir.semi.ac.cn/handle/172111/7537] |
专题 | 半导体研究所_中国科学院半导体研究所(2009年前) |
推荐引用方式 GB/T 7714 | Liu JG ,Cheng TH ,Yeo YK ,et al. All-optical continuously tunable delay with a high linear-chirp-rate fiber Bragg grating based on four-wave mixing in a highly-nonlinear photonic crystal fiber[J]. optics communications,2009,282(22):4366-4369. |
APA | Liu JG .,Cheng TH .,Yeo YK .,Wang YX .,Xue LF .,...&Wang DW .(2009).All-optical continuously tunable delay with a high linear-chirp-rate fiber Bragg grating based on four-wave mixing in a highly-nonlinear photonic crystal fiber.optics communications,282(22),4366-4369. |
MLA | Liu JG ,et al."All-optical continuously tunable delay with a high linear-chirp-rate fiber Bragg grating based on four-wave mixing in a highly-nonlinear photonic crystal fiber".optics communications 282.22(2009):4366-4369. |
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