Acta Photonica Sinica, Volume. 52, Issue 2, 0213001(2023)
Three-channel Integrated Device for Graphene Electro-optic Modulation and Mode Division Multiplexing
[1] HIRAKI T, AIHARA T, HASEBE K et al. Heterogeneously integrated III-V/Si MOS capacitor Mach-Zehnder modulator[J]. Nature Photonics, 11, 482-485(2017).
[2] WANG Shuirou, CHEN Heming, LIU Xue et al. An integrated device for electro-optic modulation and wavelength division multiplexing with the wavelength channel spacing of 3.2 nm[J]. Acta Photonica Sinica, 51, 0551312(2022).
[3] WANG Jiaqi, ZHANG Xinying, CHEN Yuzhi et al. Design of a graphene-based silicon nitride multimode waveguide-integrated electro-optic modulator[J]. Optics Communications, 481, 126531(2021).
[4] REZAEI M H, SHIRI M. High-performance tunable resonant electro-optical modulator based on suspended graphene waveguides[J]. Optics Express, 29, 16299-16311(2021).
[5] LIAN Tianhang, YANG Kaidi, SUN Shijie et al. Polarization-independent electro-absorption optical modulator based on trapezoid polymer-graphene waveguide[J]. Optics & Laser Technology, 149, 107815(2022).
[6] KIM S, MENABDE S G, COX J D et al. Ultracompact electro-optic waveguide modulator based on a graphene-covered λ/1000 plasmonic nanogap[J]. Optics Express, 29, 13852-13863(2021).
[7] LIAN Tianhang, YANG Kaidi, WANG Xibin et al. Electro-absorption optical modulator based on graphene-buried polymer waveguides[J]. IEEE Photonics Journal, 12, 1-10(2020).
[8] SORIANELLO V, MIDRIO M, ROMAGNOLI M. Design optimization of single and double layer Graphene phase modulators in SOI[J]. Optics Express, 23, 6478-6490(2015).
[9] CHEN Kaixuan, LIU Liu, HE Sailing. Mode division multiplexing based on supermodes in densely packed uniform waveguide array (DPUWA)[J]. IEEE Photonics Journal, 12, 1-10(2020).
[10] HAN Xu, XIAO Huifu, LIU Zilong et al. Reconfigurable on-chip mode exchange for mode-division multiplexing optical networks[J]. Journal of Lightwave Technology, 37, 1008-1013(2019).
[11] ZHANG G, MOJAVER H R, DAS A et al. Mode insensitive switch for on-chip interconnect mode division multiplexing systems[J]. Optics Letters, 45, 811-814(2020).
[12] GOSTIMIROVIC D, YE W N. Compact silicon-photonic mode-division (de) multiplexer using waveguide-wrapped microdisk resonators[J]. Optics Letters, 46, 388-391(2021).
[13] LIU Yingjie, WANG Zi, LIU Yilin et al. Ultra-compact mode-division multiplexed photonic integrated circuit for dual polarizations[J]. Journal of Lightwave Technology, 39, 5925-5932(2021).
[14] DING Hongjie, LIU Peng, LIU Yong et al. Research on designing approaches for device and integration of photonic integrated interferometric detecting system[J]. Acta Photonica Sinica, 50, 0513001(2021).
[15] YUE Gongcheng, XING Zhengkun, HU Haofeng et al. Graphene-based dual-mode modulators[J]. Optics Express, 28, 18456-18471(2020).
[16] LIU Xue, CHEN Heming, HU Yuchen. An integrated device for photonic crystal electro-optic modulation and coarse wavelength division multiplexing[J]. Chinese Journal of Lasers, 48, 0306002(2021).
[17] JIA Hao, FU Xin, ZHOU Ting et al. Mode-selective modulation by silicon microring resonators and mode multiplexers for on-chip optical interconnect[J]. Optics Express, 27, 2915-2925(2019).
[18] WU Xinru, HUANG Chaoran, XU Ke et al. 3×104 Gb/s single-λ interconnect of mode-division multiplexed network with a multicore fiber[J]. Journal of Lightwave Technology, 36, 318-324(2018).
[19] CHEN Guanyu, YU Yu, ZHANG Xinliang. Monolithically mode division multiplexing photonic integrated circuit for large-capacity optical interconnection[J]. Optics Letters, 41, 3543-3546(2016).
[20] REN Hongliang, JIANG Chun, HU Weisheng et al. Photonic crystal channel drop filter with a wavelength-selective reflection micro-cavity[J]. Optics Express, 14, 2446-2458(2006).
[21] JOANNOPOULOS J D, JOHNSON S G, WINN J N et al[M]. Photonic crystals: molding the flow of light, 198-203(2008).
[22] PAN Wanle, CHEN Heming, HU Yuchen. Integrated device for graphene electro‑optic modulation and one‑dimensional photonic crystal nanobeam cavity wavelength division multiplexing[J]. Applied Physics B, 128, 95(2022).
[23] DU Wei, LI Erping, HAO Ran. Tunability analysis of a graphene-embedded ring modulator[J]. IEEE Photonics Technology Letters, 26, 2008-2011(2014).
[24] QIU C, GAO W, VAJTAI R et al. Efficient modulation of 1.55 μm radiation with gated graphene on a silicon micro-ring resonator[J]. Nano Letters, 14, 6811-6815(2014).
[25] CHEN Heming, SU Jian, WANG Jingli et al. Optically-controlled high-speed terahertz wave modulator based on nonlinear photonic crystals[J]. Optics Express, 19, 3599-3603(2011).
[26] MALEVICH Y, ERGOKTAS M S, BAKAN G et al. Video-speed graphene modulator arrays for terahertz imaging applications[J]. ACS Photonics, 7, 2374-2380(2020).
[27] XIANG Tong, CHEN Heming, HU Yuchen. Silicon-based integrated device for electro-optic modulation assembly with mode-division multiplexing[J]. Chinese Journal of Lasers, 48, 1106001(2021).
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Wanle PAN, Heming CHEN, Yuchen HU. Three-channel Integrated Device for Graphene Electro-optic Modulation and Mode Division Multiplexing[J]. Acta Photonica Sinica, 2023, 52(2): 0213001
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Received: Sep. 22, 2022
Accepted: Nov. 10, 2022
Published Online: Mar. 28, 2023
The Author Email: Heming CHEN (chhm@njupt.edu.cn)