Chinese Optics Letters, Volume. 20, Issue 11, 111301(2022)

Fabrication and characterization of on-chip silicon spherical-like microcavities with high Q-factors

Hailong Han1,2, Hao Li1,2, Lixing You1,2, and Xiaoping Liu3、*
Author Affiliations
  • 1State Key Laboratory of Functional Materials for Informatics, Shanghai Institute of Microsystem and Information Technology (SIMIT), Chinese Academy of Sciences (CAS), Shanghai 200050, China
  • 2CAS Center for Excellence in Superconducting Electronics (CENSE), Shanghai 200050, China
  • 3School of Physical Science and Technology, ShanghaiTech University, Shanghai 201210, China
  • show less
    References(32)

    [1] K. J. Vahala. Optical microcavities. Nature, 424, 839(2003).

    [2] J. Ward, O. Benson. WGM microresonators: sensing, lasing and fundamental optics with microspheres. Laser Photonics Rev., 5, 553(2011).

    [3] M. Cai, O. Painter, K. J. Vahala, P. C. Sercel. Fiber-coupled microsphere laser. Opt. Lett., 25, 1430(2000).

    [4] T. Bilici, S. Isci, A. Kurt, A. Serpengüzel. Microsphere-based channel dropping filter with an integrated photodetector. IEEE Photon. Tech. Lett., 16, 476(2004).

    [5] M. Cai, G. Hunziker, K. J. Vahala. Fiber-optic add-drop device based on a silica microsphere-whispering gallery mode system. IEEE Photon. Technol. Lett., 11, 686(1999).

    [6] H. C. Tapalian, J. P. Laine, P. A. Lane. Thermooptical switches using coated microsphere resonators. IEEE Photon. Technol. Lett., 14, 1118(2002).

    [7] I. Teraoka, S. Arnold, F. Vollmer. Perturbation approach to resonance shifts of whispering-gallery modes in a dielectric microsphere as a probe of a surrounding medium. J. Opt. Soc. Am. B, 20, 1937(2003).

    [8] J. P. Laine, C. Tapalian, B. Little, H. Haus. Acceleration sensor based on high-Q optical microsphere resonator and pedestal antiresonant reflecting waveguide coupler. Sens. Actuators A Phys., 93, 1(2001).

    [9] A. B. Matsko, A. A. Savchenkov, V. S. Ilchenko, L. Maleki. Optical gyroscope with whispering gallery mode optical cavities. Opt. Commun., 233, 107(2004).

    [10] H. Lee, T. Chen, J. Li, K. Y. Yang, S. Jeon, O. Painter, K. J. Vahala. Chemically etched ultrahigh-Q wedge-resonator on a silicon chip. Nat. Photonics, 6, 369(2012).

    [11] M. L. Gorodetsky, A. A. Savchenkov, V. S. Ilchenko. Ultimate Q of optical microsphere resonators. Opt. Lett., 21, 453(1996).

    [12] D. K. Armani, T. J. Kippenberg, S. M. Spillane, K. J. Vahala. Ultra-high-Q toroid microcavity on a chip. Nature, 421, 925(2003).

    [13] R. Schilling, H. Schütz, A. H. Ghadimi, V. Sudhir, D. J. Wilson, T. J. Kippenberg. Near-field integration of a SiN nanobeam and a SiO2 microcavity for Heisenberg-limited displacement sensing. Phys. Rev. Appl., 5, 054019(2016).

    [14] M. Pöllinger, D. O’Shea, F. Warken, A. Rauschenbeutel. Ultrahigh-Q tunable whispering-gallery-mode microresonator. Phys. Rev. Lett., 103, 053901(2009).

    [15] S. I. Shopova, H. Zhou, X. Fan, P. Zhang. Optofluidic ring resonator based dye laser. Appl. Phys. Lett., 90, 221101(2007).

    [16] Y. Yang, S. Saurabh, J. M. Ward, S. N. Chormaic. High-Q, ultrathin-walled microbubble resonator for aerostatic pressure sensing. Opt. Express, 24, 294(2016).

    [17] R. Shankar, R. Leijssen, I. Bulu, M. Lončar. Mid-infrared photonic crystal cavities in silicon. Opt. Express, 19, 5579(2011).

    [18] C. Reimer, M. Nedeljkovic, D. J. M. Stothard, M. O. S. Esnault, C. Reardon, L. O’Faolain, M. Dunn, G. Z. Mashanovich, T. F. Krauss. Mid-infrared photonic crystal waveguides in silicon. Opt. Express, 20, 29361(2012).

    [19] G. P. Agrawal. Nonlinear Fiber Optics(1995).

    [20] S. A. Miller, M. Yu, X. Ji, A. G. Griffith, J. Cardenas, A. L. Gaeta, M. Lipson. Low-loss silicon platform for broadband mid-infrared photonics. Optica, 4, 707(2017).

    [21] K. Srinivasan, H. X. Miao, M. T. Rakher, M. Davanco, V. Aksyuk. Optomechanical transduction of an integrated silicon cantilever probe using a microdisk resonator. Nano Lett., 11, 791(2011).

    [22] M. Garín, R. Fenollosa, R. Alcubilla, L. Shi, L. Marsal, F. Meseguer. All-silicon spherical-Mie-resonator photodiode with spectral response in the infrared region. Nat. Commun., 5, 3440(2014).

    [23] R. Fenollosa, F. Meseguer, M. Tymczenko. Silicon colloids: from microcavities to photonic sponges. Adv. Mater., 20, 95(2008).

    [24] S. C. Hung, S. C. Shiu, C. H. Chao, C. F. Lin. Fabrication of crystalline Si spheres with atomic-scale surface smoothness using homogenized KrF excimer laser reformation system. J. Vac. Sci. Technol. B, 27, 1156(2009).

    [25] J. Wu, Y. Huang, Y. Lin, Q. Li, J. Huang, T. Wu, C. Guo. Whispering gallery modes from silicon microsphere in C-band. IEEE Photon. Technol. Lett., 27, 1993(2015).

    [26] X. Li, A. Pyatenko, Y. Shimizu, H. Wang, K. Koga, N. Koshizaki. Fabrication of crystalline silicon spheres by selective laser heating in liquid medium. Langmuir, 27, 5076(2011).

    [27] J. Takahashi, T. Tsuchizawa, T. Watanabe, S. Itabashi. Oxidation-induced improvement in the sidewall morphology and cross-sectional profile of silicon wire waveguides. J. Vac. Sci. Technol. B, 22, 2522(2004).

    [28] D. K. Sparacin, S. J. Spector, L. C. Kimerling. Silicon waveguide sidewall smoothing by wet chemical oxidation. J. Light. Technol., 23, 2455(2005).

    [29] H. Kuribayashi, R. Hiruta, R. Shimizu, K. Sudoh, H. Iwasaki. Shape transformation of silicon trenches during hydrogen annealing. J. Vac. Sci. Technol. A, 21, 1279(2003).

    [30] H. Hara, Y. Sano, K. Arima, K. Yagi, J. Murata, A. Kubota, H. Mimura, K. Yamauchi. Catalyst-referred etching of silicon. Sci. Technol. Adv. Mater., 8, 162(2007).

    [31] J. C. Knight, G. Cheung, F. Jacques, T. A. Birks. Phase-matched excitation of whispering gallery modes by a fiber taper. Opt. Lett., 22, 1129(1997).

    [32] Y. Chen, Y. Yin, L. Ma, O. G. Schmidt. Recent progress on optoplasmonic whispering-gallery-mode microcavities. Adv. Opt. Mater., 9, 2100143(2021).

    Cited By

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    [1] Xiangzheng Li, Bowen Cui, Peizhen Xu, Yu Xie, Pan Wang, Limin Tong, Xin Guo.

    Tools

    Get Citation

    Copy Citation Text

    Hailong Han, Hao Li, Lixing You, Xiaoping Liu, "Fabrication and characterization of on-chip silicon spherical-like microcavities with high Q-factors," Chin.Opt.Lett. 20, 111301 (2022)

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Integrated Optics

    Received: Apr. 13, 2022

    Accepted: Jun. 6, 2022

    Published Online: Jul. 14, 2022

    The Author Email: Xiaoping Liu (liuxp1@shanghaitech.edu.cn)

    DOI:10.3788/COL202220.111301

    Topics