• Photonics Research
  • Vol. 7, Issue 6, 687 (2019)
Yajie Li1、2、3, Hongyan Yu1、2、3、4, Wengyu Yang1、2、3, Chaoyang Ge5, Pengfei Wang1、2、3, Fangyuan Meng1、2、3, Guangzhen Luo1、2、3, Mengqi Wang1、3, Xuliang Zhou1、3, Dan Lu1、2、3, Guangzhao Ran5, and Jiaoqing Pan1、2、3、6
Author Affiliations
  • 1Key Laboratory of Semiconductor Materials Science, Institute of Semiconductors, Chinese Academy of Sciences, Beijing 100083, China
  • 2Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
  • 3Beijing Key Laboratory of Low Dimensional Semiconductor Materials and Devices, Beijing 100083, China
  • 4e-mail: hyyu09@semi.ac.cn
  • 5State Key Laboratory for Artificial Microstructure and Mesoscopic Physics, School of Physics, Peking University, Beijing 100871, China
  • 6e-mail: jqpan@semi.ac.cn
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    DOI: 10.1364/PRJ.7.000687 Cite this Article Set citation alerts
    Yajie Li, Hongyan Yu, Wengyu Yang, Chaoyang Ge, Pengfei Wang, Fangyuan Meng, Guangzhen Luo, Mengqi Wang, Xuliang Zhou, Dan Lu, Guangzhao Ran, Jiaoqing Pan. 4λ hybrid InG[J]. Photonics Research, 2019, 7(6): 687 Copy Citation Text show less
    References

    [1] D. Liang, J. E. Bowers. Recent progress in lasers on silicon. Nat. Photonics, 4, 511-517(2010).

    [2] M. J. R. Heck, J. F. Bauters, M. L. Davenport, J. K. Doylend, S. Jain, G. Kurczveil, S. Srinivasan, Y. Tang, J. E. Bowers. Hybrid silicon photonic integrated circuit technology. IEEE J. Sel. Top. Quantum Electron., 19, 6100117(2013).

    [3] S. S. Sui, M. Y. Tang, Y. D. Yang, J. L. Xiao, Y. Du, Y. Z. Huang. Investigation of hybrid microring lasers adhesively bonded on silicon wafer. Photon. Res., 3, 289-295(2015).

    [4] A. W. Fang, H. Park, J. E. Bowers, M. J. Paniccia, O. Cohen, R. Jones. Electrically pumped hybrid AlGaInAs-silicon evanescent laser. Opt. Express, 14, 9203-9210(2006).

    [5] K. Tanabe, K. Watanabe, Y. Arakawa. III–V/Si hybrid photonic devices by direct fusion bonding. Sci. Rep., 2, 349(2012).

    [6] Y. Li, Y. Zhang, L. Zhang, A. W. Poon. Silicon and hybrid silicon photonic devices for intra-datacenter applications: state of the art and perspectives. Photon. Res., 3, B10-B27(2015).

    [7] H. Jan, H. Nico, J. T. C. M. Pulles, S. Esther, J. C. G. Vervest. Direct bonding and beyond. Appl. Opt., 46, 6793-6803(2007).

    [8] S. Keyvaninia, S. Verstuyft, L. Van Landschoot, F. Lelarge, G. H. Duan, S. Messaoudene, J. M. Fedeli, T. De Vries, B. Smalbrugge, E. J. Geluk. Heterogeneously integrated III–V/silicon distributed feedback lasers. Opt. Lett., 38, 5434-5437(2013).

    [9] H. Kim, S. Y. Ahn, S. Kim, G. Ryu, J. H. Kyhm, K. W. Lee, J. H. Park, W. J. Choi. InAs/GaAs quantum dot infrared photodetector on a Si substrate by means of metal wafer bonding and epitaxial lift-off. Opt. Express, 25, 17562-17570(2017).

    [10] M. Buffolo, M. Pietrobon, C. De Santi, F. Samparisi, M. L. Davenport, J. E. Bowers, G. Meneghesso, E. Zanoni, M. Meneghini. Degradation mechanisms of heterogeneous III–V/silicon loop-mirror laser diodes for photonic integrated circuits. Microelectron. Reliab., 88–90, 855-858(2018).

    [11] B. B. Bakir, A. V. D. Gyves, R. Orobtchouk, P. Lyan, C. Porzier, A. Roman, J. M. Fedeli. Low-Loss (< 1  dB) and polarization-insensitive edge fiber couplers fabricated on 200-mm silicon-on-insulator wafers. IEEE Photon. Technol. Lett., 22, 739-741(2010).

    [12] M. S. Dahlem, C. W. Holzwarth, K. Anatol, F. X. Kärtner, H. I. Smith, E. P. Ippen. Reconfigurable multi-channel second-order silicon microring-resonator filterbanks for on-chip WDM systems. Opt. Express, 19, 306-316(2011).

    [13] L. Virot, P. Crozat, J. M. Fédéli, J. M. Hartmann, D. Marrismorini, E. Cassan, F. Boeuf, L. Vivien. Germanium avalanche receiver for low power interconnects. Nat. Commun., 5, 4957(2014).

    [14] T. Ferrotti, A. Chantre, B. Blampey, H. Duprez, F. Milesi, A. Myko, C. Sciancalepore, K. Hassan, J. Harduin, C. Baudot. Power-efficient carrier-depletion SOI Mach-Zehnder modulators for 4 × 25  Gbit/s operation in the O-band. Proc. SPIE, 9367, 93670D(2015).

    [15] C. Sciancalepore, L. J. Richard, J. A. Dallery, S. Pauliac, K. Hassan, J. Harduin, H. Duprez, U. Weidenmueller, D. F. G. Gallagher, S. Menezo. Low-crosstalk fabrication-insensitive echelle grating demultiplexers on silicon-on-insulator. IEEE Photon. Technol. Lett., 27, 494-497(2015).

    [16] A. Abbasi, S. Keyvaninia, J. Verbist, X. Yin, J. Bauwelinck, F. Lelarge, G. Duan, G. Roelkens, G. Morthier. 43  Gb/s NRZ-OOK direct modulation of a heterogeneously integrated InP/Si DFB laser. J. Lightwave Technol., 35, 1235-1240(2017).

    [17] N. Horiuchi, S. Matsuo. A big leap in energy-saving lasers. Nat. Photonics, 7, 576(2013).

    [18] D. A. B. Miller. Device requirements for optical interconnects to silicon chips. Proc. IEEE, 97, 1166-1185(2009).

    [19] A. W. Fang, L. Erica, K. Ying-Hao, L. Di, J. E. Bowers. A distributed feedback silicon evanescent laser. Opt. Express, 16, 4413-4419(2008).

    [20] H. Yu, L. Yuan, L. Tao, W. Chen, Y. Li, Y. Ding, G. Ran, J. Pan, W. Wang. 1550  nm evanescent hybrid InGaAsP-Si laser with buried ridge stripe structure. IEEE Photon. Technol. Lett., 28, 1146-1149(2016).

    [21] L. Yuan, L. Tao, H. Yu, W. Chen, D. Lu, Y. Li, G. Ran, J. Pan. Hybrid InGaAsP-Si evanescent laser by selective-area metal-bonding method. IEEE Photon. Technol. Lett., 25, 1180-1183(2013).

    [22] T. Hong, G. Z. Ran, T. Chen, J. Q. Pan, W. X. Chen, Y. Wang, Y. B. Cheng, S. Liang, L. J. Zhao, L. Q. Yin. A selective-area metal bonding InGaAsP-Si laser. IEEE Photon. Technol. Lett., 22, 1141-1143(2010).

    [23] L. Yuan, L. Tao, W. Chen, Y. Li, D. Lu, S. Liang, H. Yu, G. Ran, J. Pan, W. Wang. A buried ridge stripe structure InGaAsP-Si hybrid laser. IEEE Photon. Technol. Lett., 27, 352-355(2015).

    [24] L. Tao, L. Yuan, Y. Li, H. Yu, B. Wang, Q. Kan, W. Chen, J. Pan, G. Ran, W. Wang. 4λ InGaAsP-Si distributed feedback evanescent lasers with varying silicon waveguide width. Opt. Express, 22, 5448-5454(2014).

    [25] L. A. Coldren, S. W. Corzine. Diode Lasers and Photonic Integrated Circuits(1995).

    [26] M. N. Sysak, P. Hyundai, A. W. Fang, J. E. Bowers, J. Richard, C. Oded, R. Omri, M. J. Paniccia. Experimental and theoretical thermal analysis of a hybrid silicon evanescent laser. Opt. Express, 15, 15041-15046(2007).

    Yajie Li, Hongyan Yu, Wengyu Yang, Chaoyang Ge, Pengfei Wang, Fangyuan Meng, Guangzhen Luo, Mengqi Wang, Xuliang Zhou, Dan Lu, Guangzhao Ran, Jiaoqing Pan. 4λ hybrid InG[J]. Photonics Research, 2019, 7(6): 687
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