A novel scheme for synchronous optical sampling based on multicast parametric process

Tao Wang , Jia-xiu Zou , Chao Mei , Xian-ting Zhang , Jin-hui Yuan , Chong-xiu Yu

Optoelectronics Letters ›› 2015, Vol. 11 ›› Issue (1) : 53 -56.

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Optoelectronics Letters ›› 2015, Vol. 11 ›› Issue (1) :53 -56. DOI: 10.1007/s11801-015-4192-1
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A novel scheme for synchronous optical sampling based on multicast parametric process
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Abstract

We propose a novel scheme for synchronous optical sampling based on multicast parametric process. The linearly chirped and time-broadened pulses are utilized to replace the traditional mode-locked sampling pulses. An optical sampling rate of 80 Gbit/s is realized by using only one sampling source with repetition rate of 10 GHz.

Keywords

Lightwave Technology / Arrayed Waveguide Grating / IEEE Photonic Technology Letter / Dispersion Slope / Optical Sampling

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Tao Wang, Jia-xiu Zou, Chao Mei, Xian-ting Zhang, Jin-hui Yuan, Chong-xiu Yu. A novel scheme for synchronous optical sampling based on multicast parametric process. Optoelectronics Letters, 2015, 11(1): 53-56 DOI:10.1007/s11801-015-4192-1

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References

[1]

Yan H, Bahram J. Journal of Lightwave Technology. 2003, 21: 3085

[2]

Yan H, Ozdal B, Bahram J. IEEE Transaction Microwave Theory Techniques. 2005, 53: 1404

[3]

Bhushan A S, Coppinger F, Jalali B. Electronics Letters. 1998, 34: 839

[4]

Chi H, Chen Y, Mei Y, Jin X, Zheng S, Zhang X. Optics Letters. 2013, 38: 136

[5]

Nan H, Gu Y, Zhang H. IEEE Photonics Technology Letters. 2011, 23: 67

[6]

Airola M B, O’Connor S R, Dennis M L, Clark T R. IEEE Photonics Technology Letters. 2008, 20: 2171

[7]

Kang Z, Yuan J, Wu Q, Wang T, Li S, Sang X, Wang C, Farrell G. IEEE Photonics Journal. 2013, 5: 7201109

[8]

Kang Z, Yuan J, Li S, Xie S, Yan B, Sang X, Yu C. Chinese Physics B. 2013, 22: 114211

[9]

Dingkang T, Jianguo Z, Yuanshan L, Wei Z. Chinese Optics Letters. 2010, 8: 630

[10]

Westlund M, Andreks P A, Sunnerud H, Hansryd J, Li J. Journal of Lightwave Technology. 2005, 23: 2012

[11]

Brès C-S, Alic N, Gnauck A H, Jopson R M, Radic S. IEEE Photonics Technology Letters. 2008, 20: 1222

[12]

Brès C-S, Wiberg A O J, Kuo B P-P, Chavez-Boggio J M, Marki C F, Alic N, Radic S. Journal of Lightwave Technology. 2010, 28: 434

[13]

Brès C-S, Wiberg A Q J, Kuo B P P, Alic N, Radic S. I IEEE Photonics Technology Letters. 2009, 21: 1002

[14]

Salem R, Foster M A, Turner-Foster A C, Geraghty D F, Lipson M, Gaeta A L. Optics Express. 2009, 17: 4324

[15]

Hansen Mulvad H C, Palushani E, Hu H, Ji H, Galili M, Clausen A T, Pu M, Yvind K, Hvam J M, Jeppesen P, Oxenløwe L K. Optics Express. 2011, 19: B825

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