A Millimeter-Wave Generation Scheme Based on Frequency Octupling Using LiNbO3 Mach–Zehnder Modulator
Author:
Publisher
Springer Science and Business Media LLC
Subject
Engineering (miscellaneous)
Link
http://link.springer.com/content/pdf/10.1007/s40009-018-0766-3.pdf
Reference15 articles.
1. Chen S, Zhao J (2014) The requirements, challenges and technologies for 5 g of terrestrial mobile telecommunication. IEEE Commun Mag 52(5):36–43
2. Zhang J, Yu J, Chi N, Dong Z, Li X, Chang GK (2013) Multichannel 120-Gb/s data transmission over 2 × 2 MIMO fiber-wireless link at W-band. IEEE Photon Technol Lett 25(8):780–783
3. Anand Prem PK, Chakrapani Arvind (2017) Optical millimeter wave generation using external modulation—a review. Adv Nat Appl Sci 11(1):8–12
4. Ma Jianxin JYu, Chongxiu Yu, Xin Xiangjun, Sang Xinzhu, Zhang Qi (2010) 64 GHz optical millimeter wave generation by octupling 8 GHz local oscillator via a nested LiNbO3 modulator. Opt Laser Technol 42(2):264–268
5. Olmos JJV, Kuri T, Kitayama K (2007) Dynamic reconfigurable WDM 60-GHz millimeter-waveband radio-over-fiber access network: architectural considerations and experiment. J Lightwave Technol 25:3374
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