激光与光电子学进展, 2018, 55 (10): 100701, 网络出版: 2018-10-14   

切割超连续谱实现实时、高速全光量化 下载: 530次

Real-Time and High-Speed All-Optical Quantization by Slicing Supercontinuum Spectrum
郭亚 1,2李璞 1,2,3,4,*郭龑强 1,2郭园园 1,2郭晓敏 1,2刘香莲 1,2刘义铭 3,4王云才 1,2
作者单位
1 太原理工大学新型传感器与智能控制教育部重点实验室, 山西 太原 030024
2 太原理工大学物理与光电工程学院光电工程研究所, 山西 太原 030024
3 保密通信重点实验室, 四川 成都 610041
4 中国电子科技集团公司第三十研究所, 四川 成都 610041
引用该论文

郭亚, 李璞, 郭龑强, 郭园园, 郭晓敏, 刘香莲, 刘义铭, 王云才. 切割超连续谱实现实时、高速全光量化[J]. 激光与光电子学进展, 2018, 55(10): 100701.

Guo Ya, Li Pu, Guo Yanqiang, Guo Yuanyuan, Guo Xiaomin, Liu Xianglian, Liu Yiming, Wang Yuncai. Real-Time and High-Speed All-Optical Quantization by Slicing Supercontinuum Spectrum[J]. Laser & Optoelectronics Progress, 2018, 55(10): 100701.

参考文献

[1] Maruta A, Oda S I. Optical signal processing based on all-optical analog-to-digital conversion[J]. Optics and Photonics News, 2008, 19(4): 30-35.

[2] Walden R H. Analog-to-digital converter survey and analysis[J]. IEEE Journal on Selected Areas in Communications, 1999, 17(4): 539-550.

[3] Nishitani T, Konishi T, Itoh K. Optical coding scheme using optical interconnection for high sampling rate and high resolution photonic analog-to-digital conversion[J]. Optics Express, 2007, 15(24): 15812-15817.

[4] Ng W, Stephens R, Persechini D, et al. Ultra-low jitter modelocking of Er-fibre laser at 10 GHz and its application in photonic sampling for analogue-to-digital conversion[J]. Electronics Letters, 2001, 37(2): 113-115.

[5] Bhushan A S, Coppinger F, Jalali B, et al. 150 Gsample/s wavelength division sampler with time-stretched output[J]. Electronics Letters, 1998, 34(5): 474-475.

[6] Ho P P, Wang Q Z, Chen J, et al. Ultrafast optical pulse digitization with unary spectrally encoded cross-phase modulation[J]. Applied Optics, 1997, 36(15): 3425-3429.

[7] Konishi T, Tanimura K, Asano K, et al. All-optical analog-to-digital converter by use of self-frequency shifting in fiber and a pulse-shaping technique[J]. Journal of the Optical Society of America B, 2002, 19(11): 2817-2823.

[8] Xu C, Liu X. Photonic analog-to-digital converter using soliton self-frequency shift and interleaving spectral filters[J]. Optics Letters, 2003, 28(12): 986-988.

[9] Stigwall J, Galt S. Interferometric analog-to-digital conversion scheme[J]. IEEE Photonics Technology Letters, 2005, 17(2): 468-470.

[10] Ikeda K, Abdul J, Namiki S, et al. Optical quantizing and coding for ultrafast A/D conversion using nonlinear fiber-optic switches based on Sagnac interferometer[J]. Optics Express, 2005, 13(11): 4296-4302.

[11] 沈荣桂, 李宝贞, 阮丽真, 等. 集成光学Mach-Zehnder型模数转换器[J]. 光学学报, 1992, 12(7): 652-656.

    Shen R G, Li B Z, Ruan L Z, et al. Integrated optic Mach-Zehnder analog-to-digital converter[J]. Acta Optica Sinica, 1992, 12(7): 652-656.

[12] Wang Y, Zhang H M, Wu Q W, et al. Improvement of photonic ADC based on phase-shifted optical quantization by using additional modulators[J]. IEEE Photonics Technology Letters, 2012, 24(7): 566-568.

[13] Wu Q W, Zhang H M, Peng Y, et al. 40 GS/s Optical analog-to-digital conversion system and its improvement[J]. Optics Express, 2009, 17(11): 9252-9257.

[14] Zhang Z Y, Li H P, Zhang S J, et al. Analog-to-digital converters using photonic technology[J]. Chinese Science Bulletin, 2014, 59(22): 2666-2671.

[15] Kang Z, Yuan J H, Zhang X T, et al. On-chip integratable all-optical quantizer using strong cross-phase modulation in a silicon-organic hybrid slot waveguide[J]. Scientific Reports, 2016, 6: 19528.

[16] Li P, Yi X G, Liu X L, et al. All-optical analog comparator[J]. Scientific Reports, 2016, 6: 31903.

[17] Li P, Sang L X, Zhao D L, et al. All-optical comparator with a step-like transfer function[J]. Journal of Lightwave Technology, 2017, 35(23): 5034-5040.

[18] 吴显理, 李和平, 廖进昆, 等. 全光模数转换中的量化技术分析[J]. 激光与红外, 2009, 39(10): 1034-1039.

    Wu X L, Li H P, Liao J K, et al. Analysis of quantization techniques in all-optical analog-to-digital conversion[J]. Laser & Infrared, 2009, 39(10): 1034-1039.

[19] 张天航, 邱琪, 苏君, 等. 光模数转换技术及其研究进展[J]. 激光与光电子学进展, 2016, 53(12): 120003.

    Zhang T H, Qiu Q, Su J, et al. Optical analog-to-digital conversion technology and its recent progress[J]. Laser & Optoelectronics Progress, 2016, 53(12): 120003.

[20] Oda S, Maruta A. A novel quantization scheme by slicing supercontinuum spectrum for all-optical analog-to-digital conversion[J]. IEEE Photonics Technology Letters, 2005, 17(2): 465-467.

[21] Oda S, Maruta A. Two-bit all-optical analog-to-digital conversion by filtering broadened and split spectrum induced by soliton effect or self-phase modulation in fiber[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2006, 12(2): 307-314.

[22] Kang S, Yuan J H, Kang Z, et al. All-optical quantization scheme by slicing the supercontinuum in a chalcogenide horizontal slot waveguide[J]. Journal of Optics, 2015, 17(8): 085502.

[23] Zhang Y L, Mei C, Zhang X T, et al. All-optical quantization by slicing supercontinuum in a Ge11.5As24Se64.5 rib waveguide[J]. Proceedings of SPIE, 2016, 10019: 100191A.

[24] 刘楚. 长脉冲泵浦光纤超连续谱光源及其稳定性研究[D]. 北京: 北京交通大学, 2012: 12-45.

    Liu C. Optical fiber based long-pulse pumped supercontinuum laser source and its stability research[D]. Beijing: Beijing Jiaotong University, 2012: 12-45.

[25] 阿戈沃. 非线性光纤光学[M]. 贾东方, 葛春风, 王肇颖, 等, 译. 5版. 北京: 电子工业出版社, 2014: 388-394.

    Agrawal G P. Nonlinear fiber optics[M]. Jia D F, Ge C F, Wang Z Y, et al., Transl. 5th ed. Beijing: Publishing House of Electronics Industry, 2014: 388-394.

郭亚, 李璞, 郭龑强, 郭园园, 郭晓敏, 刘香莲, 刘义铭, 王云才. 切割超连续谱实现实时、高速全光量化[J]. 激光与光电子学进展, 2018, 55(10): 100701. Guo Ya, Li Pu, Guo Yanqiang, Guo Yuanyuan, Guo Xiaomin, Liu Xianglian, Liu Yiming, Wang Yuncai. Real-Time and High-Speed All-Optical Quantization by Slicing Supercontinuum Spectrum[J]. Laser & Optoelectronics Progress, 2018, 55(10): 100701.

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